// Copyright 1986-2022 Xilinx, Inc. All Rights Reserved.
// --------------------------------------------------------------------------------
// Tool Version: Vivado v.2022.2 (win64) Build 3671981 Fri Oct 14 05:00:03 MDT 2022
// Date        : Tue Mar 18 11:12:53 2025
// Host        : DESKTOP-MTCIU5H running 64-bit major release  (build 9200)
// Command     : write_verilog -force -mode funcsim -rename_top bd_top_auto_cc_0 -prefix
//               bd_top_auto_cc_0_ bd_top_auto_cc_1_sim_netlist.v
// Design      : bd_top_auto_cc_1
// Purpose     : This verilog netlist is a functional simulation representation of the design and should not be modified
//               or synthesized. This netlist cannot be used for SDF annotated simulation.
// Device      : xcku060-ffva1156-2-i
// --------------------------------------------------------------------------------
`timescale 1 ps / 1 ps

(* C_ARADDR_RIGHT = "29" *) (* C_ARADDR_WIDTH = "32" *) (* C_ARBURST_RIGHT = "16" *) 
(* C_ARBURST_WIDTH = "2" *) (* C_ARCACHE_RIGHT = "11" *) (* C_ARCACHE_WIDTH = "4" *) 
(* C_ARID_RIGHT = "61" *) (* C_ARID_WIDTH = "1" *) (* C_ARLEN_RIGHT = "21" *) 
(* C_ARLEN_WIDTH = "8" *) (* C_ARLOCK_RIGHT = "15" *) (* C_ARLOCK_WIDTH = "1" *) 
(* C_ARPROT_RIGHT = "8" *) (* C_ARPROT_WIDTH = "3" *) (* C_ARQOS_RIGHT = "0" *) 
(* C_ARQOS_WIDTH = "4" *) (* C_ARREGION_RIGHT = "4" *) (* C_ARREGION_WIDTH = "4" *) 
(* C_ARSIZE_RIGHT = "18" *) (* C_ARSIZE_WIDTH = "3" *) (* C_ARUSER_RIGHT = "0" *) 
(* C_ARUSER_WIDTH = "0" *) (* C_AR_WIDTH = "62" *) (* C_AWADDR_RIGHT = "29" *) 
(* C_AWADDR_WIDTH = "32" *) (* C_AWBURST_RIGHT = "16" *) (* C_AWBURST_WIDTH = "2" *) 
(* C_AWCACHE_RIGHT = "11" *) (* C_AWCACHE_WIDTH = "4" *) (* C_AWID_RIGHT = "61" *) 
(* C_AWID_WIDTH = "1" *) (* C_AWLEN_RIGHT = "21" *) (* C_AWLEN_WIDTH = "8" *) 
(* C_AWLOCK_RIGHT = "15" *) (* C_AWLOCK_WIDTH = "1" *) (* C_AWPROT_RIGHT = "8" *) 
(* C_AWPROT_WIDTH = "3" *) (* C_AWQOS_RIGHT = "0" *) (* C_AWQOS_WIDTH = "4" *) 
(* C_AWREGION_RIGHT = "4" *) (* C_AWREGION_WIDTH = "4" *) (* C_AWSIZE_RIGHT = "18" *) 
(* C_AWSIZE_WIDTH = "3" *) (* C_AWUSER_RIGHT = "0" *) (* C_AWUSER_WIDTH = "0" *) 
(* C_AW_WIDTH = "62" *) (* C_AXI_ADDR_WIDTH = "32" *) (* C_AXI_ARUSER_WIDTH = "1" *) 
(* C_AXI_AWUSER_WIDTH = "1" *) (* C_AXI_BUSER_WIDTH = "1" *) (* C_AXI_DATA_WIDTH = "256" *) 
(* C_AXI_ID_WIDTH = "1" *) (* C_AXI_IS_ACLK_ASYNC = "1" *) (* C_AXI_PROTOCOL = "0" *) 
(* C_AXI_RUSER_WIDTH = "1" *) (* C_AXI_SUPPORTS_READ = "1" *) (* C_AXI_SUPPORTS_USER_SIGNALS = "0" *) 
(* C_AXI_SUPPORTS_WRITE = "1" *) (* C_AXI_WUSER_WIDTH = "1" *) (* C_BID_RIGHT = "2" *) 
(* C_BID_WIDTH = "1" *) (* C_BRESP_RIGHT = "0" *) (* C_BRESP_WIDTH = "2" *) 
(* C_BUSER_RIGHT = "0" *) (* C_BUSER_WIDTH = "0" *) (* C_B_WIDTH = "3" *) 
(* C_FAMILY = "kintexu" *) (* C_FIFO_AR_WIDTH = "62" *) (* C_FIFO_AW_WIDTH = "62" *) 
(* C_FIFO_B_WIDTH = "3" *) (* C_FIFO_R_WIDTH = "260" *) (* C_FIFO_W_WIDTH = "289" *) 
(* C_M_AXI_ACLK_RATIO = "2" *) (* C_RDATA_RIGHT = "3" *) (* C_RDATA_WIDTH = "256" *) 
(* C_RID_RIGHT = "259" *) (* C_RID_WIDTH = "1" *) (* C_RLAST_RIGHT = "0" *) 
(* C_RLAST_WIDTH = "1" *) (* C_RRESP_RIGHT = "1" *) (* C_RRESP_WIDTH = "2" *) 
(* C_RUSER_RIGHT = "0" *) (* C_RUSER_WIDTH = "0" *) (* C_R_WIDTH = "260" *) 
(* C_SYNCHRONIZER_STAGE = "3" *) (* C_S_AXI_ACLK_RATIO = "1" *) (* C_WDATA_RIGHT = "33" *) 
(* C_WDATA_WIDTH = "256" *) (* C_WID_RIGHT = "289" *) (* C_WID_WIDTH = "0" *) 
(* C_WLAST_RIGHT = "0" *) (* C_WLAST_WIDTH = "1" *) (* C_WSTRB_RIGHT = "1" *) 
(* C_WSTRB_WIDTH = "32" *) (* C_WUSER_RIGHT = "0" *) (* C_WUSER_WIDTH = "0" *) 
(* C_W_WIDTH = "289" *) (* DowngradeIPIdentifiedWarnings = "yes" *) (* P_ACLK_RATIO = "2" *) 
(* P_AXI3 = "1" *) (* P_AXI4 = "0" *) (* P_AXILITE = "2" *) 
(* P_FULLY_REG = "1" *) (* P_LIGHT_WT = "0" *) (* P_LUTRAM_ASYNC = "12" *) 
(* P_ROUNDING_OFFSET = "0" *) (* P_SI_LT_MI = "1'b1" *) 
module bd_top_auto_cc_0_axi_clock_converter_v2_1_26_axi_clock_converter
   (s_axi_aclk,
    s_axi_aresetn,
    s_axi_awid,
    s_axi_awaddr,
    s_axi_awlen,
    s_axi_awsize,
    s_axi_awburst,
    s_axi_awlock,
    s_axi_awcache,
    s_axi_awprot,
    s_axi_awregion,
    s_axi_awqos,
    s_axi_awuser,
    s_axi_awvalid,
    s_axi_awready,
    s_axi_wid,
    s_axi_wdata,
    s_axi_wstrb,
    s_axi_wlast,
    s_axi_wuser,
    s_axi_wvalid,
    s_axi_wready,
    s_axi_bid,
    s_axi_bresp,
    s_axi_buser,
    s_axi_bvalid,
    s_axi_bready,
    s_axi_arid,
    s_axi_araddr,
    s_axi_arlen,
    s_axi_arsize,
    s_axi_arburst,
    s_axi_arlock,
    s_axi_arcache,
    s_axi_arprot,
    s_axi_arregion,
    s_axi_arqos,
    s_axi_aruser,
    s_axi_arvalid,
    s_axi_arready,
    s_axi_rid,
    s_axi_rdata,
    s_axi_rresp,
    s_axi_rlast,
    s_axi_ruser,
    s_axi_rvalid,
    s_axi_rready,
    m_axi_aclk,
    m_axi_aresetn,
    m_axi_awid,
    m_axi_awaddr,
    m_axi_awlen,
    m_axi_awsize,
    m_axi_awburst,
    m_axi_awlock,
    m_axi_awcache,
    m_axi_awprot,
    m_axi_awregion,
    m_axi_awqos,
    m_axi_awuser,
    m_axi_awvalid,
    m_axi_awready,
    m_axi_wid,
    m_axi_wdata,
    m_axi_wstrb,
    m_axi_wlast,
    m_axi_wuser,
    m_axi_wvalid,
    m_axi_wready,
    m_axi_bid,
    m_axi_bresp,
    m_axi_buser,
    m_axi_bvalid,
    m_axi_bready,
    m_axi_arid,
    m_axi_araddr,
    m_axi_arlen,
    m_axi_arsize,
    m_axi_arburst,
    m_axi_arlock,
    m_axi_arcache,
    m_axi_arprot,
    m_axi_arregion,
    m_axi_arqos,
    m_axi_aruser,
    m_axi_arvalid,
    m_axi_arready,
    m_axi_rid,
    m_axi_rdata,
    m_axi_rresp,
    m_axi_rlast,
    m_axi_ruser,
    m_axi_rvalid,
    m_axi_rready);
  (* keep = "true" *) input s_axi_aclk;
  (* keep = "true" *) input s_axi_aresetn;
  input [0:0]s_axi_awid;
  input [31:0]s_axi_awaddr;
  input [7:0]s_axi_awlen;
  input [2:0]s_axi_awsize;
  input [1:0]s_axi_awburst;
  input [0:0]s_axi_awlock;
  input [3:0]s_axi_awcache;
  input [2:0]s_axi_awprot;
  input [3:0]s_axi_awregion;
  input [3:0]s_axi_awqos;
  input [0:0]s_axi_awuser;
  input s_axi_awvalid;
  output s_axi_awready;
  input [0:0]s_axi_wid;
  input [255:0]s_axi_wdata;
  input [31:0]s_axi_wstrb;
  input s_axi_wlast;
  input [0:0]s_axi_wuser;
  input s_axi_wvalid;
  output s_axi_wready;
  output [0:0]s_axi_bid;
  output [1:0]s_axi_bresp;
  output [0:0]s_axi_buser;
  output s_axi_bvalid;
  input s_axi_bready;
  input [0:0]s_axi_arid;
  input [31:0]s_axi_araddr;
  input [7:0]s_axi_arlen;
  input [2:0]s_axi_arsize;
  input [1:0]s_axi_arburst;
  input [0:0]s_axi_arlock;
  input [3:0]s_axi_arcache;
  input [2:0]s_axi_arprot;
  input [3:0]s_axi_arregion;
  input [3:0]s_axi_arqos;
  input [0:0]s_axi_aruser;
  input s_axi_arvalid;
  output s_axi_arready;
  output [0:0]s_axi_rid;
  output [255:0]s_axi_rdata;
  output [1:0]s_axi_rresp;
  output s_axi_rlast;
  output [0:0]s_axi_ruser;
  output s_axi_rvalid;
  input s_axi_rready;
  (* keep = "true" *) input m_axi_aclk;
  (* keep = "true" *) input m_axi_aresetn;
  output [0:0]m_axi_awid;
  output [31:0]m_axi_awaddr;
  output [7:0]m_axi_awlen;
  output [2:0]m_axi_awsize;
  output [1:0]m_axi_awburst;
  output [0:0]m_axi_awlock;
  output [3:0]m_axi_awcache;
  output [2:0]m_axi_awprot;
  output [3:0]m_axi_awregion;
  output [3:0]m_axi_awqos;
  output [0:0]m_axi_awuser;
  output m_axi_awvalid;
  input m_axi_awready;
  output [0:0]m_axi_wid;
  output [255:0]m_axi_wdata;
  output [31:0]m_axi_wstrb;
  output m_axi_wlast;
  output [0:0]m_axi_wuser;
  output m_axi_wvalid;
  input m_axi_wready;
  input [0:0]m_axi_bid;
  input [1:0]m_axi_bresp;
  input [0:0]m_axi_buser;
  input m_axi_bvalid;
  output m_axi_bready;
  output [0:0]m_axi_arid;
  output [31:0]m_axi_araddr;
  output [7:0]m_axi_arlen;
  output [2:0]m_axi_arsize;
  output [1:0]m_axi_arburst;
  output [0:0]m_axi_arlock;
  output [3:0]m_axi_arcache;
  output [2:0]m_axi_arprot;
  output [3:0]m_axi_arregion;
  output [3:0]m_axi_arqos;
  output [0:0]m_axi_aruser;
  output m_axi_arvalid;
  input m_axi_arready;
  input [0:0]m_axi_rid;
  input [255:0]m_axi_rdata;
  input [1:0]m_axi_rresp;
  input m_axi_rlast;
  input [0:0]m_axi_ruser;
  input m_axi_rvalid;
  output m_axi_rready;

  wire \<const0> ;
  wire \gen_clock_conv.async_conv_reset_n ;
  (* RTL_KEEP = "true" *) wire m_axi_aclk;
  wire [31:0]m_axi_araddr;
  wire [1:0]m_axi_arburst;
  wire [3:0]m_axi_arcache;
  (* RTL_KEEP = "true" *) wire m_axi_aresetn;
  wire [7:0]m_axi_arlen;
  wire [0:0]m_axi_arlock;
  wire [2:0]m_axi_arprot;
  wire [3:0]m_axi_arqos;
  wire m_axi_arready;
  wire [3:0]m_axi_arregion;
  wire [2:0]m_axi_arsize;
  wire m_axi_arvalid;
  wire [31:0]m_axi_awaddr;
  wire [1:0]m_axi_awburst;
  wire [3:0]m_axi_awcache;
  wire [7:0]m_axi_awlen;
  wire [0:0]m_axi_awlock;
  wire [2:0]m_axi_awprot;
  wire [3:0]m_axi_awqos;
  wire m_axi_awready;
  wire [3:0]m_axi_awregion;
  wire [2:0]m_axi_awsize;
  wire m_axi_awvalid;
  wire m_axi_bready;
  wire [1:0]m_axi_bresp;
  wire m_axi_bvalid;
  wire [255:0]m_axi_rdata;
  wire m_axi_rlast;
  wire m_axi_rready;
  wire [1:0]m_axi_rresp;
  wire m_axi_rvalid;
  wire [255:0]m_axi_wdata;
  wire m_axi_wlast;
  wire m_axi_wready;
  wire [31:0]m_axi_wstrb;
  wire m_axi_wvalid;
  (* RTL_KEEP = "true" *) wire s_axi_aclk;
  wire [31:0]s_axi_araddr;
  wire [1:0]s_axi_arburst;
  wire [3:0]s_axi_arcache;
  (* RTL_KEEP = "true" *) wire s_axi_aresetn;
  wire [7:0]s_axi_arlen;
  wire [0:0]s_axi_arlock;
  wire [2:0]s_axi_arprot;
  wire [3:0]s_axi_arqos;
  wire s_axi_arready;
  wire [3:0]s_axi_arregion;
  wire [2:0]s_axi_arsize;
  wire s_axi_arvalid;
  wire [31:0]s_axi_awaddr;
  wire [1:0]s_axi_awburst;
  wire [3:0]s_axi_awcache;
  wire [7:0]s_axi_awlen;
  wire [0:0]s_axi_awlock;
  wire [2:0]s_axi_awprot;
  wire [3:0]s_axi_awqos;
  wire s_axi_awready;
  wire [3:0]s_axi_awregion;
  wire [2:0]s_axi_awsize;
  wire s_axi_awvalid;
  wire s_axi_bready;
  wire [1:0]s_axi_bresp;
  wire s_axi_bvalid;
  wire [255:0]s_axi_rdata;
  wire s_axi_rlast;
  wire s_axi_rready;
  wire [1:0]s_axi_rresp;
  wire s_axi_rvalid;
  wire [255:0]s_axi_wdata;
  wire s_axi_wlast;
  wire s_axi_wready;
  wire [31:0]s_axi_wstrb;
  wire s_axi_wvalid;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_almost_empty_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_almost_full_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_ar_dbiterr_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_ar_overflow_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_ar_prog_empty_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_ar_prog_full_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_ar_sbiterr_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_ar_underflow_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_aw_dbiterr_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_aw_overflow_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_aw_prog_empty_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_aw_prog_full_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_aw_sbiterr_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_aw_underflow_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_b_dbiterr_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_b_overflow_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_b_prog_empty_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_b_prog_full_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_b_sbiterr_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_b_underflow_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_r_dbiterr_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_r_overflow_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_r_prog_empty_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_r_prog_full_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_r_sbiterr_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_r_underflow_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_w_dbiterr_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_w_overflow_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_w_prog_empty_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_w_prog_full_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_w_sbiterr_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_w_underflow_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axis_dbiterr_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axis_overflow_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axis_prog_empty_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axis_prog_full_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axis_sbiterr_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axis_underflow_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_dbiterr_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_empty_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_full_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axis_tlast_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axis_tvalid_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_overflow_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_prog_empty_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_prog_full_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_rd_rst_busy_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_s_axis_tready_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_sbiterr_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_underflow_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_valid_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_wr_ack_UNCONNECTED ;
  wire \NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_wr_rst_busy_UNCONNECTED ;
  wire [4:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_ar_data_count_UNCONNECTED ;
  wire [4:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_ar_rd_data_count_UNCONNECTED ;
  wire [4:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_ar_wr_data_count_UNCONNECTED ;
  wire [4:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_aw_data_count_UNCONNECTED ;
  wire [4:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_aw_rd_data_count_UNCONNECTED ;
  wire [4:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_aw_wr_data_count_UNCONNECTED ;
  wire [4:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_b_data_count_UNCONNECTED ;
  wire [4:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_b_rd_data_count_UNCONNECTED ;
  wire [4:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_b_wr_data_count_UNCONNECTED ;
  wire [4:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_r_data_count_UNCONNECTED ;
  wire [4:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_r_rd_data_count_UNCONNECTED ;
  wire [4:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_r_wr_data_count_UNCONNECTED ;
  wire [4:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_w_data_count_UNCONNECTED ;
  wire [4:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_w_rd_data_count_UNCONNECTED ;
  wire [4:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_w_wr_data_count_UNCONNECTED ;
  wire [10:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axis_data_count_UNCONNECTED ;
  wire [10:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axis_rd_data_count_UNCONNECTED ;
  wire [10:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axis_wr_data_count_UNCONNECTED ;
  wire [9:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_data_count_UNCONNECTED ;
  wire [17:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_dout_UNCONNECTED ;
  wire [0:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axi_arid_UNCONNECTED ;
  wire [0:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axi_aruser_UNCONNECTED ;
  wire [0:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axi_awid_UNCONNECTED ;
  wire [0:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axi_awuser_UNCONNECTED ;
  wire [0:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axi_wid_UNCONNECTED ;
  wire [0:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axi_wuser_UNCONNECTED ;
  wire [7:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axis_tdata_UNCONNECTED ;
  wire [0:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axis_tdest_UNCONNECTED ;
  wire [0:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axis_tid_UNCONNECTED ;
  wire [0:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axis_tkeep_UNCONNECTED ;
  wire [0:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axis_tstrb_UNCONNECTED ;
  wire [3:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axis_tuser_UNCONNECTED ;
  wire [9:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_rd_data_count_UNCONNECTED ;
  wire [0:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_s_axi_bid_UNCONNECTED ;
  wire [0:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_s_axi_buser_UNCONNECTED ;
  wire [0:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_s_axi_rid_UNCONNECTED ;
  wire [0:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_s_axi_ruser_UNCONNECTED ;
  wire [9:0]\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_wr_data_count_UNCONNECTED ;

  assign m_axi_arid[0] = \<const0> ;
  assign m_axi_aruser[0] = \<const0> ;
  assign m_axi_awid[0] = \<const0> ;
  assign m_axi_awuser[0] = \<const0> ;
  assign m_axi_wid[0] = \<const0> ;
  assign m_axi_wuser[0] = \<const0> ;
  assign s_axi_bid[0] = \<const0> ;
  assign s_axi_buser[0] = \<const0> ;
  assign s_axi_rid[0] = \<const0> ;
  assign s_axi_ruser[0] = \<const0> ;
  GND GND
       (.G(\<const0> ));
  (* C_ADD_NGC_CONSTRAINT = "0" *) 
  (* C_APPLICATION_TYPE_AXIS = "0" *) 
  (* C_APPLICATION_TYPE_RACH = "0" *) 
  (* C_APPLICATION_TYPE_RDCH = "0" *) 
  (* C_APPLICATION_TYPE_WACH = "0" *) 
  (* C_APPLICATION_TYPE_WDCH = "0" *) 
  (* C_APPLICATION_TYPE_WRCH = "0" *) 
  (* C_AXIS_TDATA_WIDTH = "8" *) 
  (* C_AXIS_TDEST_WIDTH = "1" *) 
  (* C_AXIS_TID_WIDTH = "1" *) 
  (* C_AXIS_TKEEP_WIDTH = "1" *) 
  (* C_AXIS_TSTRB_WIDTH = "1" *) 
  (* C_AXIS_TUSER_WIDTH = "4" *) 
  (* C_AXIS_TYPE = "0" *) 
  (* C_AXI_ADDR_WIDTH = "32" *) 
  (* C_AXI_ARUSER_WIDTH = "1" *) 
  (* C_AXI_AWUSER_WIDTH = "1" *) 
  (* C_AXI_BUSER_WIDTH = "1" *) 
  (* C_AXI_DATA_WIDTH = "256" *) 
  (* C_AXI_ID_WIDTH = "1" *) 
  (* C_AXI_LEN_WIDTH = "8" *) 
  (* C_AXI_LOCK_WIDTH = "1" *) 
  (* C_AXI_RUSER_WIDTH = "1" *) 
  (* C_AXI_TYPE = "1" *) 
  (* C_AXI_WUSER_WIDTH = "1" *) 
  (* C_COMMON_CLOCK = "0" *) 
  (* C_COUNT_TYPE = "0" *) 
  (* C_DATA_COUNT_WIDTH = "10" *) 
  (* C_DEFAULT_VALUE = "BlankString" *) 
  (* C_DIN_WIDTH = "18" *) 
  (* C_DIN_WIDTH_AXIS = "1" *) 
  (* C_DIN_WIDTH_RACH = "62" *) 
  (* C_DIN_WIDTH_RDCH = "260" *) 
  (* C_DIN_WIDTH_WACH = "62" *) 
  (* C_DIN_WIDTH_WDCH = "289" *) 
  (* C_DIN_WIDTH_WRCH = "3" *) 
  (* C_DOUT_RST_VAL = "0" *) 
  (* C_DOUT_WIDTH = "18" *) 
  (* C_ENABLE_RLOCS = "0" *) 
  (* C_ENABLE_RST_SYNC = "1" *) 
  (* C_EN_SAFETY_CKT = "0" *) 
  (* C_ERROR_INJECTION_TYPE = "0" *) 
  (* C_ERROR_INJECTION_TYPE_AXIS = "0" *) 
  (* C_ERROR_INJECTION_TYPE_RACH = "0" *) 
  (* C_ERROR_INJECTION_TYPE_RDCH = "0" *) 
  (* C_ERROR_INJECTION_TYPE_WACH = "0" *) 
  (* C_ERROR_INJECTION_TYPE_WDCH = "0" *) 
  (* C_ERROR_INJECTION_TYPE_WRCH = "0" *) 
  (* C_FAMILY = "kintexu" *) 
  (* C_FULL_FLAGS_RST_VAL = "1" *) 
  (* C_HAS_ALMOST_EMPTY = "0" *) 
  (* C_HAS_ALMOST_FULL = "0" *) 
  (* C_HAS_AXIS_TDATA = "1" *) 
  (* C_HAS_AXIS_TDEST = "0" *) 
  (* C_HAS_AXIS_TID = "0" *) 
  (* C_HAS_AXIS_TKEEP = "0" *) 
  (* C_HAS_AXIS_TLAST = "0" *) 
  (* C_HAS_AXIS_TREADY = "1" *) 
  (* C_HAS_AXIS_TSTRB = "0" *) 
  (* C_HAS_AXIS_TUSER = "1" *) 
  (* C_HAS_AXI_ARUSER = "0" *) 
  (* C_HAS_AXI_AWUSER = "0" *) 
  (* C_HAS_AXI_BUSER = "0" *) 
  (* C_HAS_AXI_ID = "1" *) 
  (* C_HAS_AXI_RD_CHANNEL = "1" *) 
  (* C_HAS_AXI_RUSER = "0" *) 
  (* C_HAS_AXI_WR_CHANNEL = "1" *) 
  (* C_HAS_AXI_WUSER = "0" *) 
  (* C_HAS_BACKUP = "0" *) 
  (* C_HAS_DATA_COUNT = "0" *) 
  (* C_HAS_DATA_COUNTS_AXIS = "0" *) 
  (* C_HAS_DATA_COUNTS_RACH = "0" *) 
  (* C_HAS_DATA_COUNTS_RDCH = "0" *) 
  (* C_HAS_DATA_COUNTS_WACH = "0" *) 
  (* C_HAS_DATA_COUNTS_WDCH = "0" *) 
  (* C_HAS_DATA_COUNTS_WRCH = "0" *) 
  (* C_HAS_INT_CLK = "0" *) 
  (* C_HAS_MASTER_CE = "0" *) 
  (* C_HAS_MEMINIT_FILE = "0" *) 
  (* C_HAS_OVERFLOW = "0" *) 
  (* C_HAS_PROG_FLAGS_AXIS = "0" *) 
  (* C_HAS_PROG_FLAGS_RACH = "0" *) 
  (* C_HAS_PROG_FLAGS_RDCH = "0" *) 
  (* C_HAS_PROG_FLAGS_WACH = "0" *) 
  (* C_HAS_PROG_FLAGS_WDCH = "0" *) 
  (* C_HAS_PROG_FLAGS_WRCH = "0" *) 
  (* C_HAS_RD_DATA_COUNT = "0" *) 
  (* C_HAS_RD_RST = "0" *) 
  (* C_HAS_RST = "1" *) 
  (* C_HAS_SLAVE_CE = "0" *) 
  (* C_HAS_SRST = "0" *) 
  (* C_HAS_UNDERFLOW = "0" *) 
  (* C_HAS_VALID = "0" *) 
  (* C_HAS_WR_ACK = "0" *) 
  (* C_HAS_WR_DATA_COUNT = "0" *) 
  (* C_HAS_WR_RST = "0" *) 
  (* C_IMPLEMENTATION_TYPE = "0" *) 
  (* C_IMPLEMENTATION_TYPE_AXIS = "11" *) 
  (* C_IMPLEMENTATION_TYPE_RACH = "12" *) 
  (* C_IMPLEMENTATION_TYPE_RDCH = "12" *) 
  (* C_IMPLEMENTATION_TYPE_WACH = "12" *) 
  (* C_IMPLEMENTATION_TYPE_WDCH = "12" *) 
  (* C_IMPLEMENTATION_TYPE_WRCH = "12" *) 
  (* C_INIT_WR_PNTR_VAL = "0" *) 
  (* C_INTERFACE_TYPE = "2" *) 
  (* C_MEMORY_TYPE = "1" *) 
  (* C_MIF_FILE_NAME = "BlankString" *) 
  (* C_MSGON_VAL = "1" *) 
  (* C_OPTIMIZATION_MODE = "0" *) 
  (* C_OVERFLOW_LOW = "0" *) 
  (* C_POWER_SAVING_MODE = "0" *) 
  (* C_PRELOAD_LATENCY = "1" *) 
  (* C_PRELOAD_REGS = "0" *) 
  (* C_PRIM_FIFO_TYPE = "4kx4" *) 
  (* C_PRIM_FIFO_TYPE_AXIS = "512x36" *) 
  (* C_PRIM_FIFO_TYPE_RACH = "512x36" *) 
  (* C_PRIM_FIFO_TYPE_RDCH = "512x36" *) 
  (* C_PRIM_FIFO_TYPE_WACH = "512x36" *) 
  (* C_PRIM_FIFO_TYPE_WDCH = "512x36" *) 
  (* C_PRIM_FIFO_TYPE_WRCH = "512x36" *) 
  (* C_PROG_EMPTY_THRESH_ASSERT_VAL = "2" *) 
  (* C_PROG_EMPTY_THRESH_ASSERT_VAL_AXIS = "1021" *) 
  (* C_PROG_EMPTY_THRESH_ASSERT_VAL_RACH = "13" *) 
  (* C_PROG_EMPTY_THRESH_ASSERT_VAL_RDCH = "13" *) 
  (* C_PROG_EMPTY_THRESH_ASSERT_VAL_WACH = "13" *) 
  (* C_PROG_EMPTY_THRESH_ASSERT_VAL_WDCH = "13" *) 
  (* C_PROG_EMPTY_THRESH_ASSERT_VAL_WRCH = "13" *) 
  (* C_PROG_EMPTY_THRESH_NEGATE_VAL = "3" *) 
  (* C_PROG_EMPTY_TYPE = "0" *) 
  (* C_PROG_EMPTY_TYPE_AXIS = "0" *) 
  (* C_PROG_EMPTY_TYPE_RACH = "0" *) 
  (* C_PROG_EMPTY_TYPE_RDCH = "0" *) 
  (* C_PROG_EMPTY_TYPE_WACH = "0" *) 
  (* C_PROG_EMPTY_TYPE_WDCH = "0" *) 
  (* C_PROG_EMPTY_TYPE_WRCH = "0" *) 
  (* C_PROG_FULL_THRESH_ASSERT_VAL = "1022" *) 
  (* C_PROG_FULL_THRESH_ASSERT_VAL_AXIS = "1023" *) 
  (* C_PROG_FULL_THRESH_ASSERT_VAL_RACH = "15" *) 
  (* C_PROG_FULL_THRESH_ASSERT_VAL_RDCH = "15" *) 
  (* C_PROG_FULL_THRESH_ASSERT_VAL_WACH = "15" *) 
  (* C_PROG_FULL_THRESH_ASSERT_VAL_WDCH = "15" *) 
  (* C_PROG_FULL_THRESH_ASSERT_VAL_WRCH = "15" *) 
  (* C_PROG_FULL_THRESH_NEGATE_VAL = "1021" *) 
  (* C_PROG_FULL_TYPE = "0" *) 
  (* C_PROG_FULL_TYPE_AXIS = "0" *) 
  (* C_PROG_FULL_TYPE_RACH = "0" *) 
  (* C_PROG_FULL_TYPE_RDCH = "0" *) 
  (* C_PROG_FULL_TYPE_WACH = "0" *) 
  (* C_PROG_FULL_TYPE_WDCH = "0" *) 
  (* C_PROG_FULL_TYPE_WRCH = "0" *) 
  (* C_RACH_TYPE = "0" *) 
  (* C_RDCH_TYPE = "0" *) 
  (* C_RD_DATA_COUNT_WIDTH = "10" *) 
  (* C_RD_DEPTH = "1024" *) 
  (* C_RD_FREQ = "1" *) 
  (* C_RD_PNTR_WIDTH = "10" *) 
  (* C_REG_SLICE_MODE_AXIS = "0" *) 
  (* C_REG_SLICE_MODE_RACH = "0" *) 
  (* C_REG_SLICE_MODE_RDCH = "0" *) 
  (* C_REG_SLICE_MODE_WACH = "0" *) 
  (* C_REG_SLICE_MODE_WDCH = "0" *) 
  (* C_REG_SLICE_MODE_WRCH = "0" *) 
  (* C_SELECT_XPM = "0" *) 
  (* C_SYNCHRONIZER_STAGE = "3" *) 
  (* C_UNDERFLOW_LOW = "0" *) 
  (* C_USE_COMMON_OVERFLOW = "0" *) 
  (* C_USE_COMMON_UNDERFLOW = "0" *) 
  (* C_USE_DEFAULT_SETTINGS = "0" *) 
  (* C_USE_DOUT_RST = "1" *) 
  (* C_USE_ECC = "0" *) 
  (* C_USE_ECC_AXIS = "0" *) 
  (* C_USE_ECC_RACH = "0" *) 
  (* C_USE_ECC_RDCH = "0" *) 
  (* C_USE_ECC_WACH = "0" *) 
  (* C_USE_ECC_WDCH = "0" *) 
  (* C_USE_ECC_WRCH = "0" *) 
  (* C_USE_EMBEDDED_REG = "0" *) 
  (* C_USE_FIFO16_FLAGS = "0" *) 
  (* C_USE_FWFT_DATA_COUNT = "0" *) 
  (* C_USE_PIPELINE_REG = "0" *) 
  (* C_VALID_LOW = "0" *) 
  (* C_WACH_TYPE = "0" *) 
  (* C_WDCH_TYPE = "0" *) 
  (* C_WRCH_TYPE = "0" *) 
  (* C_WR_ACK_LOW = "0" *) 
  (* C_WR_DATA_COUNT_WIDTH = "10" *) 
  (* C_WR_DEPTH = "1024" *) 
  (* C_WR_DEPTH_AXIS = "1024" *) 
  (* C_WR_DEPTH_RACH = "16" *) 
  (* C_WR_DEPTH_RDCH = "16" *) 
  (* C_WR_DEPTH_WACH = "16" *) 
  (* C_WR_DEPTH_WDCH = "16" *) 
  (* C_WR_DEPTH_WRCH = "16" *) 
  (* C_WR_FREQ = "1" *) 
  (* C_WR_PNTR_WIDTH = "10" *) 
  (* C_WR_PNTR_WIDTH_AXIS = "10" *) 
  (* C_WR_PNTR_WIDTH_RACH = "4" *) 
  (* C_WR_PNTR_WIDTH_RDCH = "4" *) 
  (* C_WR_PNTR_WIDTH_WACH = "4" *) 
  (* C_WR_PNTR_WIDTH_WDCH = "4" *) 
  (* C_WR_PNTR_WIDTH_WRCH = "4" *) 
  (* C_WR_RESPONSE_LATENCY = "1" *) 
  (* KEEP_HIERARCHY = "soft" *) 
  (* is_du_within_envelope = "true" *) 
  bd_top_auto_cc_0_fifo_generator_v13_2_7 \gen_clock_conv.gen_async_conv.asyncfifo_axi 
       (.almost_empty(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_almost_empty_UNCONNECTED ),
        .almost_full(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_almost_full_UNCONNECTED ),
        .axi_ar_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_ar_data_count_UNCONNECTED [4:0]),
        .axi_ar_dbiterr(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_ar_dbiterr_UNCONNECTED ),
        .axi_ar_injectdbiterr(1'b0),
        .axi_ar_injectsbiterr(1'b0),
        .axi_ar_overflow(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_ar_overflow_UNCONNECTED ),
        .axi_ar_prog_empty(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_ar_prog_empty_UNCONNECTED ),
        .axi_ar_prog_empty_thresh({1'b0,1'b0,1'b0,1'b0}),
        .axi_ar_prog_full(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_ar_prog_full_UNCONNECTED ),
        .axi_ar_prog_full_thresh({1'b0,1'b0,1'b0,1'b0}),
        .axi_ar_rd_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_ar_rd_data_count_UNCONNECTED [4:0]),
        .axi_ar_sbiterr(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_ar_sbiterr_UNCONNECTED ),
        .axi_ar_underflow(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_ar_underflow_UNCONNECTED ),
        .axi_ar_wr_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_ar_wr_data_count_UNCONNECTED [4:0]),
        .axi_aw_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_aw_data_count_UNCONNECTED [4:0]),
        .axi_aw_dbiterr(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_aw_dbiterr_UNCONNECTED ),
        .axi_aw_injectdbiterr(1'b0),
        .axi_aw_injectsbiterr(1'b0),
        .axi_aw_overflow(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_aw_overflow_UNCONNECTED ),
        .axi_aw_prog_empty(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_aw_prog_empty_UNCONNECTED ),
        .axi_aw_prog_empty_thresh({1'b0,1'b0,1'b0,1'b0}),
        .axi_aw_prog_full(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_aw_prog_full_UNCONNECTED ),
        .axi_aw_prog_full_thresh({1'b0,1'b0,1'b0,1'b0}),
        .axi_aw_rd_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_aw_rd_data_count_UNCONNECTED [4:0]),
        .axi_aw_sbiterr(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_aw_sbiterr_UNCONNECTED ),
        .axi_aw_underflow(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_aw_underflow_UNCONNECTED ),
        .axi_aw_wr_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_aw_wr_data_count_UNCONNECTED [4:0]),
        .axi_b_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_b_data_count_UNCONNECTED [4:0]),
        .axi_b_dbiterr(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_b_dbiterr_UNCONNECTED ),
        .axi_b_injectdbiterr(1'b0),
        .axi_b_injectsbiterr(1'b0),
        .axi_b_overflow(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_b_overflow_UNCONNECTED ),
        .axi_b_prog_empty(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_b_prog_empty_UNCONNECTED ),
        .axi_b_prog_empty_thresh({1'b0,1'b0,1'b0,1'b0}),
        .axi_b_prog_full(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_b_prog_full_UNCONNECTED ),
        .axi_b_prog_full_thresh({1'b0,1'b0,1'b0,1'b0}),
        .axi_b_rd_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_b_rd_data_count_UNCONNECTED [4:0]),
        .axi_b_sbiterr(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_b_sbiterr_UNCONNECTED ),
        .axi_b_underflow(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_b_underflow_UNCONNECTED ),
        .axi_b_wr_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_b_wr_data_count_UNCONNECTED [4:0]),
        .axi_r_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_r_data_count_UNCONNECTED [4:0]),
        .axi_r_dbiterr(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_r_dbiterr_UNCONNECTED ),
        .axi_r_injectdbiterr(1'b0),
        .axi_r_injectsbiterr(1'b0),
        .axi_r_overflow(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_r_overflow_UNCONNECTED ),
        .axi_r_prog_empty(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_r_prog_empty_UNCONNECTED ),
        .axi_r_prog_empty_thresh({1'b0,1'b0,1'b0,1'b0}),
        .axi_r_prog_full(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_r_prog_full_UNCONNECTED ),
        .axi_r_prog_full_thresh({1'b0,1'b0,1'b0,1'b0}),
        .axi_r_rd_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_r_rd_data_count_UNCONNECTED [4:0]),
        .axi_r_sbiterr(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_r_sbiterr_UNCONNECTED ),
        .axi_r_underflow(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_r_underflow_UNCONNECTED ),
        .axi_r_wr_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_r_wr_data_count_UNCONNECTED [4:0]),
        .axi_w_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_w_data_count_UNCONNECTED [4:0]),
        .axi_w_dbiterr(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_w_dbiterr_UNCONNECTED ),
        .axi_w_injectdbiterr(1'b0),
        .axi_w_injectsbiterr(1'b0),
        .axi_w_overflow(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_w_overflow_UNCONNECTED ),
        .axi_w_prog_empty(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_w_prog_empty_UNCONNECTED ),
        .axi_w_prog_empty_thresh({1'b0,1'b0,1'b0,1'b0}),
        .axi_w_prog_full(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_w_prog_full_UNCONNECTED ),
        .axi_w_prog_full_thresh({1'b0,1'b0,1'b0,1'b0}),
        .axi_w_rd_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_w_rd_data_count_UNCONNECTED [4:0]),
        .axi_w_sbiterr(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_w_sbiterr_UNCONNECTED ),
        .axi_w_underflow(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_w_underflow_UNCONNECTED ),
        .axi_w_wr_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axi_w_wr_data_count_UNCONNECTED [4:0]),
        .axis_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axis_data_count_UNCONNECTED [10:0]),
        .axis_dbiterr(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axis_dbiterr_UNCONNECTED ),
        .axis_injectdbiterr(1'b0),
        .axis_injectsbiterr(1'b0),
        .axis_overflow(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axis_overflow_UNCONNECTED ),
        .axis_prog_empty(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axis_prog_empty_UNCONNECTED ),
        .axis_prog_empty_thresh({1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0}),
        .axis_prog_full(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axis_prog_full_UNCONNECTED ),
        .axis_prog_full_thresh({1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0}),
        .axis_rd_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axis_rd_data_count_UNCONNECTED [10:0]),
        .axis_sbiterr(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axis_sbiterr_UNCONNECTED ),
        .axis_underflow(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axis_underflow_UNCONNECTED ),
        .axis_wr_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_axis_wr_data_count_UNCONNECTED [10:0]),
        .backup(1'b0),
        .backup_marker(1'b0),
        .clk(1'b0),
        .data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_data_count_UNCONNECTED [9:0]),
        .dbiterr(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_dbiterr_UNCONNECTED ),
        .din({1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0}),
        .dout(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_dout_UNCONNECTED [17:0]),
        .empty(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_empty_UNCONNECTED ),
        .full(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_full_UNCONNECTED ),
        .injectdbiterr(1'b0),
        .injectsbiterr(1'b0),
        .int_clk(1'b0),
        .m_aclk(m_axi_aclk),
        .m_aclk_en(1'b1),
        .m_axi_araddr(m_axi_araddr),
        .m_axi_arburst(m_axi_arburst),
        .m_axi_arcache(m_axi_arcache),
        .m_axi_arid(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axi_arid_UNCONNECTED [0]),
        .m_axi_arlen(m_axi_arlen),
        .m_axi_arlock(m_axi_arlock),
        .m_axi_arprot(m_axi_arprot),
        .m_axi_arqos(m_axi_arqos),
        .m_axi_arready(m_axi_arready),
        .m_axi_arregion(m_axi_arregion),
        .m_axi_arsize(m_axi_arsize),
        .m_axi_aruser(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axi_aruser_UNCONNECTED [0]),
        .m_axi_arvalid(m_axi_arvalid),
        .m_axi_awaddr(m_axi_awaddr),
        .m_axi_awburst(m_axi_awburst),
        .m_axi_awcache(m_axi_awcache),
        .m_axi_awid(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axi_awid_UNCONNECTED [0]),
        .m_axi_awlen(m_axi_awlen),
        .m_axi_awlock(m_axi_awlock),
        .m_axi_awprot(m_axi_awprot),
        .m_axi_awqos(m_axi_awqos),
        .m_axi_awready(m_axi_awready),
        .m_axi_awregion(m_axi_awregion),
        .m_axi_awsize(m_axi_awsize),
        .m_axi_awuser(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axi_awuser_UNCONNECTED [0]),
        .m_axi_awvalid(m_axi_awvalid),
        .m_axi_bid(1'b0),
        .m_axi_bready(m_axi_bready),
        .m_axi_bresp(m_axi_bresp),
        .m_axi_buser(1'b0),
        .m_axi_bvalid(m_axi_bvalid),
        .m_axi_rdata(m_axi_rdata),
        .m_axi_rid(1'b0),
        .m_axi_rlast(m_axi_rlast),
        .m_axi_rready(m_axi_rready),
        .m_axi_rresp(m_axi_rresp),
        .m_axi_ruser(1'b0),
        .m_axi_rvalid(m_axi_rvalid),
        .m_axi_wdata(m_axi_wdata),
        .m_axi_wid(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axi_wid_UNCONNECTED [0]),
        .m_axi_wlast(m_axi_wlast),
        .m_axi_wready(m_axi_wready),
        .m_axi_wstrb(m_axi_wstrb),
        .m_axi_wuser(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axi_wuser_UNCONNECTED [0]),
        .m_axi_wvalid(m_axi_wvalid),
        .m_axis_tdata(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axis_tdata_UNCONNECTED [7:0]),
        .m_axis_tdest(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axis_tdest_UNCONNECTED [0]),
        .m_axis_tid(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axis_tid_UNCONNECTED [0]),
        .m_axis_tkeep(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axis_tkeep_UNCONNECTED [0]),
        .m_axis_tlast(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axis_tlast_UNCONNECTED ),
        .m_axis_tready(1'b0),
        .m_axis_tstrb(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axis_tstrb_UNCONNECTED [0]),
        .m_axis_tuser(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axis_tuser_UNCONNECTED [3:0]),
        .m_axis_tvalid(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_m_axis_tvalid_UNCONNECTED ),
        .overflow(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_overflow_UNCONNECTED ),
        .prog_empty(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_prog_empty_UNCONNECTED ),
        .prog_empty_thresh({1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0}),
        .prog_empty_thresh_assert({1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0}),
        .prog_empty_thresh_negate({1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0}),
        .prog_full(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_prog_full_UNCONNECTED ),
        .prog_full_thresh({1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0}),
        .prog_full_thresh_assert({1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0}),
        .prog_full_thresh_negate({1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0}),
        .rd_clk(1'b0),
        .rd_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_rd_data_count_UNCONNECTED [9:0]),
        .rd_en(1'b0),
        .rd_rst(1'b0),
        .rd_rst_busy(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_rd_rst_busy_UNCONNECTED ),
        .rst(1'b0),
        .s_aclk(s_axi_aclk),
        .s_aclk_en(1'b1),
        .s_aresetn(\gen_clock_conv.async_conv_reset_n ),
        .s_axi_araddr(s_axi_araddr),
        .s_axi_arburst(s_axi_arburst),
        .s_axi_arcache(s_axi_arcache),
        .s_axi_arid(1'b0),
        .s_axi_arlen(s_axi_arlen),
        .s_axi_arlock(s_axi_arlock),
        .s_axi_arprot(s_axi_arprot),
        .s_axi_arqos(s_axi_arqos),
        .s_axi_arready(s_axi_arready),
        .s_axi_arregion(s_axi_arregion),
        .s_axi_arsize(s_axi_arsize),
        .s_axi_aruser(1'b0),
        .s_axi_arvalid(s_axi_arvalid),
        .s_axi_awaddr(s_axi_awaddr),
        .s_axi_awburst(s_axi_awburst),
        .s_axi_awcache(s_axi_awcache),
        .s_axi_awid(1'b0),
        .s_axi_awlen(s_axi_awlen),
        .s_axi_awlock(s_axi_awlock),
        .s_axi_awprot(s_axi_awprot),
        .s_axi_awqos(s_axi_awqos),
        .s_axi_awready(s_axi_awready),
        .s_axi_awregion(s_axi_awregion),
        .s_axi_awsize(s_axi_awsize),
        .s_axi_awuser(1'b0),
        .s_axi_awvalid(s_axi_awvalid),
        .s_axi_bid(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_s_axi_bid_UNCONNECTED [0]),
        .s_axi_bready(s_axi_bready),
        .s_axi_bresp(s_axi_bresp),
        .s_axi_buser(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_s_axi_buser_UNCONNECTED [0]),
        .s_axi_bvalid(s_axi_bvalid),
        .s_axi_rdata(s_axi_rdata),
        .s_axi_rid(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_s_axi_rid_UNCONNECTED [0]),
        .s_axi_rlast(s_axi_rlast),
        .s_axi_rready(s_axi_rready),
        .s_axi_rresp(s_axi_rresp),
        .s_axi_ruser(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_s_axi_ruser_UNCONNECTED [0]),
        .s_axi_rvalid(s_axi_rvalid),
        .s_axi_wdata(s_axi_wdata),
        .s_axi_wid(1'b0),
        .s_axi_wlast(s_axi_wlast),
        .s_axi_wready(s_axi_wready),
        .s_axi_wstrb(s_axi_wstrb),
        .s_axi_wuser(1'b0),
        .s_axi_wvalid(s_axi_wvalid),
        .s_axis_tdata({1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0,1'b0}),
        .s_axis_tdest(1'b0),
        .s_axis_tid(1'b0),
        .s_axis_tkeep(1'b0),
        .s_axis_tlast(1'b0),
        .s_axis_tready(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_s_axis_tready_UNCONNECTED ),
        .s_axis_tstrb(1'b0),
        .s_axis_tuser({1'b0,1'b0,1'b0,1'b0}),
        .s_axis_tvalid(1'b0),
        .sbiterr(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_sbiterr_UNCONNECTED ),
        .sleep(1'b0),
        .srst(1'b0),
        .underflow(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_underflow_UNCONNECTED ),
        .valid(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_valid_UNCONNECTED ),
        .wr_ack(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_wr_ack_UNCONNECTED ),
        .wr_clk(1'b0),
        .wr_data_count(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_wr_data_count_UNCONNECTED [9:0]),
        .wr_en(1'b0),
        .wr_rst(1'b0),
        .wr_rst_busy(\NLW_gen_clock_conv.gen_async_conv.asyncfifo_axi_wr_rst_busy_UNCONNECTED ));
  LUT2 #(
    .INIT(4'h8)) 
    \gen_clock_conv.gen_async_conv.asyncfifo_axi_i_1 
       (.I0(s_axi_aresetn),
        .I1(m_axi_aresetn),
        .O(\gen_clock_conv.async_conv_reset_n ));
endmodule

(* CHECK_LICENSE_TYPE = "bd_top_auto_cc_1,axi_clock_converter_v2_1_26_axi_clock_converter,{}" *) (* DowngradeIPIdentifiedWarnings = "yes" *) (* X_CORE_INFO = "axi_clock_converter_v2_1_26_axi_clock_converter,Vivado 2022.2" *) 
(* NotValidForBitStream *)
module bd_top_auto_cc_0
   (s_axi_aclk,
    s_axi_aresetn,
    s_axi_awaddr,
    s_axi_awlen,
    s_axi_awsize,
    s_axi_awburst,
    s_axi_awlock,
    s_axi_awcache,
    s_axi_awprot,
    s_axi_awregion,
    s_axi_awqos,
    s_axi_awvalid,
    s_axi_awready,
    s_axi_wdata,
    s_axi_wstrb,
    s_axi_wlast,
    s_axi_wvalid,
    s_axi_wready,
    s_axi_bresp,
    s_axi_bvalid,
    s_axi_bready,
    s_axi_araddr,
    s_axi_arlen,
    s_axi_arsize,
    s_axi_arburst,
    s_axi_arlock,
    s_axi_arcache,
    s_axi_arprot,
    s_axi_arregion,
    s_axi_arqos,
    s_axi_arvalid,
    s_axi_arready,
    s_axi_rdata,
    s_axi_rresp,
    s_axi_rlast,
    s_axi_rvalid,
    s_axi_rready,
    m_axi_aclk,
    m_axi_aresetn,
    m_axi_awaddr,
    m_axi_awlen,
    m_axi_awsize,
    m_axi_awburst,
    m_axi_awlock,
    m_axi_awcache,
    m_axi_awprot,
    m_axi_awregion,
    m_axi_awqos,
    m_axi_awvalid,
    m_axi_awready,
    m_axi_wdata,
    m_axi_wstrb,
    m_axi_wlast,
    m_axi_wvalid,
    m_axi_wready,
    m_axi_bresp,
    m_axi_bvalid,
    m_axi_bready,
    m_axi_araddr,
    m_axi_arlen,
    m_axi_arsize,
    m_axi_arburst,
    m_axi_arlock,
    m_axi_arcache,
    m_axi_arprot,
    m_axi_arregion,
    m_axi_arqos,
    m_axi_arvalid,
    m_axi_arready,
    m_axi_rdata,
    m_axi_rresp,
    m_axi_rlast,
    m_axi_rvalid,
    m_axi_rready);
  (* X_INTERFACE_INFO = "xilinx.com:signal:clock:1.0 SI_CLK CLK" *) (* X_INTERFACE_PARAMETER = "XIL_INTERFACENAME SI_CLK, FREQ_HZ 160000000, FREQ_TOLERANCE_HZ 0, PHASE 0.0, CLK_DOMAIN bd_top_ACLK_0, ASSOCIATED_BUSIF S_AXI, ASSOCIATED_RESET S_AXI_ARESETN, INSERT_VIP 0" *) input s_axi_aclk;
  (* X_INTERFACE_INFO = "xilinx.com:signal:reset:1.0 SI_RST RST" *) (* X_INTERFACE_PARAMETER = "XIL_INTERFACENAME SI_RST, POLARITY ACTIVE_LOW, INSERT_VIP 0, TYPE INTERCONNECT" *) input s_axi_aresetn;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI AWADDR" *) input [31:0]s_axi_awaddr;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI AWLEN" *) input [7:0]s_axi_awlen;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI AWSIZE" *) input [2:0]s_axi_awsize;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI AWBURST" *) input [1:0]s_axi_awburst;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI AWLOCK" *) input [0:0]s_axi_awlock;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI AWCACHE" *) input [3:0]s_axi_awcache;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI AWPROT" *) input [2:0]s_axi_awprot;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI AWREGION" *) input [3:0]s_axi_awregion;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI AWQOS" *) input [3:0]s_axi_awqos;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI AWVALID" *) input s_axi_awvalid;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI AWREADY" *) output s_axi_awready;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI WDATA" *) input [255:0]s_axi_wdata;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI WSTRB" *) input [31:0]s_axi_wstrb;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI WLAST" *) input s_axi_wlast;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI WVALID" *) input s_axi_wvalid;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI WREADY" *) output s_axi_wready;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI BRESP" *) output [1:0]s_axi_bresp;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI BVALID" *) output s_axi_bvalid;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI BREADY" *) input s_axi_bready;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI ARADDR" *) input [31:0]s_axi_araddr;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI ARLEN" *) input [7:0]s_axi_arlen;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI ARSIZE" *) input [2:0]s_axi_arsize;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI ARBURST" *) input [1:0]s_axi_arburst;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI ARLOCK" *) input [0:0]s_axi_arlock;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI ARCACHE" *) input [3:0]s_axi_arcache;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI ARPROT" *) input [2:0]s_axi_arprot;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI ARREGION" *) input [3:0]s_axi_arregion;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI ARQOS" *) input [3:0]s_axi_arqos;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI ARVALID" *) input s_axi_arvalid;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI ARREADY" *) output s_axi_arready;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI RDATA" *) output [255:0]s_axi_rdata;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI RRESP" *) output [1:0]s_axi_rresp;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI RLAST" *) output s_axi_rlast;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI RVALID" *) output s_axi_rvalid;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 S_AXI RREADY" *) (* X_INTERFACE_PARAMETER = "XIL_INTERFACENAME S_AXI, DATA_WIDTH 256, PROTOCOL AXI4, FREQ_HZ 160000000, ID_WIDTH 0, ADDR_WIDTH 32, AWUSER_WIDTH 0, ARUSER_WIDTH 0, WUSER_WIDTH 0, RUSER_WIDTH 0, BUSER_WIDTH 0, READ_WRITE_MODE READ_WRITE, HAS_BURST 1, HAS_LOCK 1, HAS_PROT 1, HAS_CACHE 1, HAS_QOS 1, HAS_REGION 1, HAS_WSTRB 1, HAS_BRESP 1, HAS_RRESP 1, SUPPORTS_NARROW_BURST 1, NUM_READ_OUTSTANDING 2, NUM_WRITE_OUTSTANDING 2, MAX_BURST_LENGTH 256, PHASE 0.0, CLK_DOMAIN bd_top_ACLK_0, NUM_READ_THREADS 1, NUM_WRITE_THREADS 1, RUSER_BITS_PER_BYTE 0, WUSER_BITS_PER_BYTE 0, INSERT_VIP 0" *) input s_axi_rready;
  (* X_INTERFACE_INFO = "xilinx.com:signal:clock:1.0 MI_CLK CLK" *) (* X_INTERFACE_PARAMETER = "XIL_INTERFACENAME MI_CLK, FREQ_HZ 200000000, FREQ_TOLERANCE_HZ 0, PHASE 0.0, CLK_DOMAIN bd_top_M01_ACLK_0, ASSOCIATED_BUSIF M_AXI, ASSOCIATED_RESET M_AXI_ARESETN, INSERT_VIP 0" *) input m_axi_aclk;
  (* X_INTERFACE_INFO = "xilinx.com:signal:reset:1.0 MI_RST RST" *) (* X_INTERFACE_PARAMETER = "XIL_INTERFACENAME MI_RST, POLARITY ACTIVE_LOW, INSERT_VIP 0, TYPE INTERCONNECT" *) input m_axi_aresetn;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI AWADDR" *) output [31:0]m_axi_awaddr;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI AWLEN" *) output [7:0]m_axi_awlen;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI AWSIZE" *) output [2:0]m_axi_awsize;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI AWBURST" *) output [1:0]m_axi_awburst;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI AWLOCK" *) output [0:0]m_axi_awlock;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI AWCACHE" *) output [3:0]m_axi_awcache;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI AWPROT" *) output [2:0]m_axi_awprot;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI AWREGION" *) output [3:0]m_axi_awregion;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI AWQOS" *) output [3:0]m_axi_awqos;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI AWVALID" *) output m_axi_awvalid;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI AWREADY" *) input m_axi_awready;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI WDATA" *) output [255:0]m_axi_wdata;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI WSTRB" *) output [31:0]m_axi_wstrb;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI WLAST" *) output m_axi_wlast;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI WVALID" *) output m_axi_wvalid;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI WREADY" *) input m_axi_wready;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI BRESP" *) input [1:0]m_axi_bresp;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI BVALID" *) input m_axi_bvalid;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI BREADY" *) output m_axi_bready;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI ARADDR" *) output [31:0]m_axi_araddr;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI ARLEN" *) output [7:0]m_axi_arlen;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI ARSIZE" *) output [2:0]m_axi_arsize;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI ARBURST" *) output [1:0]m_axi_arburst;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI ARLOCK" *) output [0:0]m_axi_arlock;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI ARCACHE" *) output [3:0]m_axi_arcache;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI ARPROT" *) output [2:0]m_axi_arprot;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI ARREGION" *) output [3:0]m_axi_arregion;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI ARQOS" *) output [3:0]m_axi_arqos;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI ARVALID" *) output m_axi_arvalid;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI ARREADY" *) input m_axi_arready;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI RDATA" *) input [255:0]m_axi_rdata;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI RRESP" *) input [1:0]m_axi_rresp;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI RLAST" *) input m_axi_rlast;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI RVALID" *) input m_axi_rvalid;
  (* X_INTERFACE_INFO = "xilinx.com:interface:aximm:1.0 M_AXI RREADY" *) (* X_INTERFACE_PARAMETER = "XIL_INTERFACENAME M_AXI, DATA_WIDTH 256, PROTOCOL AXI4, FREQ_HZ 200000000, ID_WIDTH 0, ADDR_WIDTH 32, AWUSER_WIDTH 0, ARUSER_WIDTH 0, WUSER_WIDTH 0, RUSER_WIDTH 0, BUSER_WIDTH 0, READ_WRITE_MODE READ_WRITE, HAS_BURST 1, HAS_LOCK 0, HAS_PROT 1, HAS_CACHE 0, HAS_QOS 0, HAS_REGION 0, HAS_WSTRB 1, HAS_BRESP 1, HAS_RRESP 1, SUPPORTS_NARROW_BURST 1, NUM_READ_OUTSTANDING 2, NUM_WRITE_OUTSTANDING 2, MAX_BURST_LENGTH 256, PHASE 0.0, CLK_DOMAIN bd_top_M01_ACLK_0, NUM_READ_THREADS 1, NUM_WRITE_THREADS 1, RUSER_BITS_PER_BYTE 0, WUSER_BITS_PER_BYTE 0, INSERT_VIP 0" *) output m_axi_rready;

  wire m_axi_aclk;
  wire [31:0]m_axi_araddr;
  wire [1:0]m_axi_arburst;
  wire [3:0]m_axi_arcache;
  wire m_axi_aresetn;
  wire [7:0]m_axi_arlen;
  wire [0:0]m_axi_arlock;
  wire [2:0]m_axi_arprot;
  wire [3:0]m_axi_arqos;
  wire m_axi_arready;
  wire [3:0]m_axi_arregion;
  wire [2:0]m_axi_arsize;
  wire m_axi_arvalid;
  wire [31:0]m_axi_awaddr;
  wire [1:0]m_axi_awburst;
  wire [3:0]m_axi_awcache;
  wire [7:0]m_axi_awlen;
  wire [0:0]m_axi_awlock;
  wire [2:0]m_axi_awprot;
  wire [3:0]m_axi_awqos;
  wire m_axi_awready;
  wire [3:0]m_axi_awregion;
  wire [2:0]m_axi_awsize;
  wire m_axi_awvalid;
  wire m_axi_bready;
  wire [1:0]m_axi_bresp;
  wire m_axi_bvalid;
  wire [255:0]m_axi_rdata;
  wire m_axi_rlast;
  wire m_axi_rready;
  wire [1:0]m_axi_rresp;
  wire m_axi_rvalid;
  wire [255:0]m_axi_wdata;
  wire m_axi_wlast;
  wire m_axi_wready;
  wire [31:0]m_axi_wstrb;
  wire m_axi_wvalid;
  wire s_axi_aclk;
  wire [31:0]s_axi_araddr;
  wire [1:0]s_axi_arburst;
  wire [3:0]s_axi_arcache;
  wire s_axi_aresetn;
  wire [7:0]s_axi_arlen;
  wire [0:0]s_axi_arlock;
  wire [2:0]s_axi_arprot;
  wire [3:0]s_axi_arqos;
  wire s_axi_arready;
  wire [3:0]s_axi_arregion;
  wire [2:0]s_axi_arsize;
  wire s_axi_arvalid;
  wire [31:0]s_axi_awaddr;
  wire [1:0]s_axi_awburst;
  wire [3:0]s_axi_awcache;
  wire [7:0]s_axi_awlen;
  wire [0:0]s_axi_awlock;
  wire [2:0]s_axi_awprot;
  wire [3:0]s_axi_awqos;
  wire s_axi_awready;
  wire [3:0]s_axi_awregion;
  wire [2:0]s_axi_awsize;
  wire s_axi_awvalid;
  wire s_axi_bready;
  wire [1:0]s_axi_bresp;
  wire s_axi_bvalid;
  wire [255:0]s_axi_rdata;
  wire s_axi_rlast;
  wire s_axi_rready;
  wire [1:0]s_axi_rresp;
  wire s_axi_rvalid;
  wire [255:0]s_axi_wdata;
  wire s_axi_wlast;
  wire s_axi_wready;
  wire [31:0]s_axi_wstrb;
  wire s_axi_wvalid;
  wire [0:0]NLW_inst_m_axi_arid_UNCONNECTED;
  wire [0:0]NLW_inst_m_axi_aruser_UNCONNECTED;
  wire [0:0]NLW_inst_m_axi_awid_UNCONNECTED;
  wire [0:0]NLW_inst_m_axi_awuser_UNCONNECTED;
  wire [0:0]NLW_inst_m_axi_wid_UNCONNECTED;
  wire [0:0]NLW_inst_m_axi_wuser_UNCONNECTED;
  wire [0:0]NLW_inst_s_axi_bid_UNCONNECTED;
  wire [0:0]NLW_inst_s_axi_buser_UNCONNECTED;
  wire [0:0]NLW_inst_s_axi_rid_UNCONNECTED;
  wire [0:0]NLW_inst_s_axi_ruser_UNCONNECTED;

  (* C_ARADDR_RIGHT = "29" *) 
  (* C_ARADDR_WIDTH = "32" *) 
  (* C_ARBURST_RIGHT = "16" *) 
  (* C_ARBURST_WIDTH = "2" *) 
  (* C_ARCACHE_RIGHT = "11" *) 
  (* C_ARCACHE_WIDTH = "4" *) 
  (* C_ARID_RIGHT = "61" *) 
  (* C_ARID_WIDTH = "1" *) 
  (* C_ARLEN_RIGHT = "21" *) 
  (* C_ARLEN_WIDTH = "8" *) 
  (* C_ARLOCK_RIGHT = "15" *) 
  (* C_ARLOCK_WIDTH = "1" *) 
  (* C_ARPROT_RIGHT = "8" *) 
  (* C_ARPROT_WIDTH = "3" *) 
  (* C_ARQOS_RIGHT = "0" *) 
  (* C_ARQOS_WIDTH = "4" *) 
  (* C_ARREGION_RIGHT = "4" *) 
  (* C_ARREGION_WIDTH = "4" *) 
  (* C_ARSIZE_RIGHT = "18" *) 
  (* C_ARSIZE_WIDTH = "3" *) 
  (* C_ARUSER_RIGHT = "0" *) 
  (* C_ARUSER_WIDTH = "0" *) 
  (* C_AR_WIDTH = "62" *) 
  (* C_AWADDR_RIGHT = "29" *) 
  (* C_AWADDR_WIDTH = "32" *) 
  (* C_AWBURST_RIGHT = "16" *) 
  (* C_AWBURST_WIDTH = "2" *) 
  (* C_AWCACHE_RIGHT = "11" *) 
  (* C_AWCACHE_WIDTH = "4" *) 
  (* C_AWID_RIGHT = "61" *) 
  (* C_AWID_WIDTH = "1" *) 
  (* C_AWLEN_RIGHT = "21" *) 
  (* C_AWLEN_WIDTH = "8" *) 
  (* C_AWLOCK_RIGHT = "15" *) 
  (* C_AWLOCK_WIDTH = "1" *) 
  (* C_AWPROT_RIGHT = "8" *) 
  (* C_AWPROT_WIDTH = "3" *) 
  (* C_AWQOS_RIGHT = "0" *) 
  (* C_AWQOS_WIDTH = "4" *) 
  (* C_AWREGION_RIGHT = "4" *) 
  (* C_AWREGION_WIDTH = "4" *) 
  (* C_AWSIZE_RIGHT = "18" *) 
  (* C_AWSIZE_WIDTH = "3" *) 
  (* C_AWUSER_RIGHT = "0" *) 
  (* C_AWUSER_WIDTH = "0" *) 
  (* C_AW_WIDTH = "62" *) 
  (* C_AXI_ADDR_WIDTH = "32" *) 
  (* C_AXI_ARUSER_WIDTH = "1" *) 
  (* C_AXI_AWUSER_WIDTH = "1" *) 
  (* C_AXI_BUSER_WIDTH = "1" *) 
  (* C_AXI_DATA_WIDTH = "256" *) 
  (* C_AXI_ID_WIDTH = "1" *) 
  (* C_AXI_IS_ACLK_ASYNC = "1" *) 
  (* C_AXI_PROTOCOL = "0" *) 
  (* C_AXI_RUSER_WIDTH = "1" *) 
  (* C_AXI_SUPPORTS_READ = "1" *) 
  (* C_AXI_SUPPORTS_USER_SIGNALS = "0" *) 
  (* C_AXI_SUPPORTS_WRITE = "1" *) 
  (* C_AXI_WUSER_WIDTH = "1" *) 
  (* C_BID_RIGHT = "2" *) 
  (* C_BID_WIDTH = "1" *) 
  (* C_BRESP_RIGHT = "0" *) 
  (* C_BRESP_WIDTH = "2" *) 
  (* C_BUSER_RIGHT = "0" *) 
  (* C_BUSER_WIDTH = "0" *) 
  (* C_B_WIDTH = "3" *) 
  (* C_FAMILY = "kintexu" *) 
  (* C_FIFO_AR_WIDTH = "62" *) 
  (* C_FIFO_AW_WIDTH = "62" *) 
  (* C_FIFO_B_WIDTH = "3" *) 
  (* C_FIFO_R_WIDTH = "260" *) 
  (* C_FIFO_W_WIDTH = "289" *) 
  (* C_M_AXI_ACLK_RATIO = "2" *) 
  (* C_RDATA_RIGHT = "3" *) 
  (* C_RDATA_WIDTH = "256" *) 
  (* C_RID_RIGHT = "259" *) 
  (* C_RID_WIDTH = "1" *) 
  (* C_RLAST_RIGHT = "0" *) 
  (* C_RLAST_WIDTH = "1" *) 
  (* C_RRESP_RIGHT = "1" *) 
  (* C_RRESP_WIDTH = "2" *) 
  (* C_RUSER_RIGHT = "0" *) 
  (* C_RUSER_WIDTH = "0" *) 
  (* C_R_WIDTH = "260" *) 
  (* C_SYNCHRONIZER_STAGE = "3" *) 
  (* C_S_AXI_ACLK_RATIO = "1" *) 
  (* C_WDATA_RIGHT = "33" *) 
  (* C_WDATA_WIDTH = "256" *) 
  (* C_WID_RIGHT = "289" *) 
  (* C_WID_WIDTH = "0" *) 
  (* C_WLAST_RIGHT = "0" *) 
  (* C_WLAST_WIDTH = "1" *) 
  (* C_WSTRB_RIGHT = "1" *) 
  (* C_WSTRB_WIDTH = "32" *) 
  (* C_WUSER_RIGHT = "0" *) 
  (* C_WUSER_WIDTH = "0" *) 
  (* C_W_WIDTH = "289" *) 
  (* P_ACLK_RATIO = "2" *) 
  (* P_AXI3 = "1" *) 
  (* P_AXI4 = "0" *) 
  (* P_AXILITE = "2" *) 
  (* P_FULLY_REG = "1" *) 
  (* P_LIGHT_WT = "0" *) 
  (* P_LUTRAM_ASYNC = "12" *) 
  (* P_ROUNDING_OFFSET = "0" *) 
  (* P_SI_LT_MI = "1'b1" *) 
  (* downgradeipidentifiedwarnings = "yes" *) 
  bd_top_auto_cc_0_axi_clock_converter_v2_1_26_axi_clock_converter inst
       (.m_axi_aclk(m_axi_aclk),
        .m_axi_araddr(m_axi_araddr),
        .m_axi_arburst(m_axi_arburst),
        .m_axi_arcache(m_axi_arcache),
        .m_axi_aresetn(m_axi_aresetn),
        .m_axi_arid(NLW_inst_m_axi_arid_UNCONNECTED[0]),
        .m_axi_arlen(m_axi_arlen),
        .m_axi_arlock(m_axi_arlock),
        .m_axi_arprot(m_axi_arprot),
        .m_axi_arqos(m_axi_arqos),
        .m_axi_arready(m_axi_arready),
        .m_axi_arregion(m_axi_arregion),
        .m_axi_arsize(m_axi_arsize),
        .m_axi_aruser(NLW_inst_m_axi_aruser_UNCONNECTED[0]),
        .m_axi_arvalid(m_axi_arvalid),
        .m_axi_awaddr(m_axi_awaddr),
        .m_axi_awburst(m_axi_awburst),
        .m_axi_awcache(m_axi_awcache),
        .m_axi_awid(NLW_inst_m_axi_awid_UNCONNECTED[0]),
        .m_axi_awlen(m_axi_awlen),
        .m_axi_awlock(m_axi_awlock),
        .m_axi_awprot(m_axi_awprot),
        .m_axi_awqos(m_axi_awqos),
        .m_axi_awready(m_axi_awready),
        .m_axi_awregion(m_axi_awregion),
        .m_axi_awsize(m_axi_awsize),
        .m_axi_awuser(NLW_inst_m_axi_awuser_UNCONNECTED[0]),
        .m_axi_awvalid(m_axi_awvalid),
        .m_axi_bid(1'b0),
        .m_axi_bready(m_axi_bready),
        .m_axi_bresp(m_axi_bresp),
        .m_axi_buser(1'b0),
        .m_axi_bvalid(m_axi_bvalid),
        .m_axi_rdata(m_axi_rdata),
        .m_axi_rid(1'b0),
        .m_axi_rlast(m_axi_rlast),
        .m_axi_rready(m_axi_rready),
        .m_axi_rresp(m_axi_rresp),
        .m_axi_ruser(1'b0),
        .m_axi_rvalid(m_axi_rvalid),
        .m_axi_wdata(m_axi_wdata),
        .m_axi_wid(NLW_inst_m_axi_wid_UNCONNECTED[0]),
        .m_axi_wlast(m_axi_wlast),
        .m_axi_wready(m_axi_wready),
        .m_axi_wstrb(m_axi_wstrb),
        .m_axi_wuser(NLW_inst_m_axi_wuser_UNCONNECTED[0]),
        .m_axi_wvalid(m_axi_wvalid),
        .s_axi_aclk(s_axi_aclk),
        .s_axi_araddr(s_axi_araddr),
        .s_axi_arburst(s_axi_arburst),
        .s_axi_arcache(s_axi_arcache),
        .s_axi_aresetn(s_axi_aresetn),
        .s_axi_arid(1'b0),
        .s_axi_arlen(s_axi_arlen),
        .s_axi_arlock(s_axi_arlock),
        .s_axi_arprot(s_axi_arprot),
        .s_axi_arqos(s_axi_arqos),
        .s_axi_arready(s_axi_arready),
        .s_axi_arregion(s_axi_arregion),
        .s_axi_arsize(s_axi_arsize),
        .s_axi_aruser(1'b0),
        .s_axi_arvalid(s_axi_arvalid),
        .s_axi_awaddr(s_axi_awaddr),
        .s_axi_awburst(s_axi_awburst),
        .s_axi_awcache(s_axi_awcache),
        .s_axi_awid(1'b0),
        .s_axi_awlen(s_axi_awlen),
        .s_axi_awlock(s_axi_awlock),
        .s_axi_awprot(s_axi_awprot),
        .s_axi_awqos(s_axi_awqos),
        .s_axi_awready(s_axi_awready),
        .s_axi_awregion(s_axi_awregion),
        .s_axi_awsize(s_axi_awsize),
        .s_axi_awuser(1'b0),
        .s_axi_awvalid(s_axi_awvalid),
        .s_axi_bid(NLW_inst_s_axi_bid_UNCONNECTED[0]),
        .s_axi_bready(s_axi_bready),
        .s_axi_bresp(s_axi_bresp),
        .s_axi_buser(NLW_inst_s_axi_buser_UNCONNECTED[0]),
        .s_axi_bvalid(s_axi_bvalid),
        .s_axi_rdata(s_axi_rdata),
        .s_axi_rid(NLW_inst_s_axi_rid_UNCONNECTED[0]),
        .s_axi_rlast(s_axi_rlast),
        .s_axi_rready(s_axi_rready),
        .s_axi_rresp(s_axi_rresp),
        .s_axi_ruser(NLW_inst_s_axi_ruser_UNCONNECTED[0]),
        .s_axi_rvalid(s_axi_rvalid),
        .s_axi_wdata(s_axi_wdata),
        .s_axi_wid(1'b0),
        .s_axi_wlast(s_axi_wlast),
        .s_axi_wready(s_axi_wready),
        .s_axi_wstrb(s_axi_wstrb),
        .s_axi_wuser(1'b0),
        .s_axi_wvalid(s_axi_wvalid));
endmodule

(* DEF_VAL = "1'b0" *) (* DEST_SYNC_FF = "2" *) (* INIT_SYNC_FF = "0" *) 
(* INV_DEF_VAL = "1'b1" *) (* RST_ACTIVE_HIGH = "1" *) (* VERSION = "0" *) 
(* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) 
(* xpm_cdc = "ASYNC_RST" *) 
module bd_top_auto_cc_0_xpm_cdc_async_rst
   (src_arst,
    dest_clk,
    dest_arst);
  input src_arst;
  input dest_clk;
  output dest_arst;

  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "ASYNC_RST" *) wire [1:0]arststages_ff;
  wire dest_clk;
  wire src_arst;

  assign dest_arst = arststages_ff[1];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(1'b0),
        .PRE(src_arst),
        .Q(arststages_ff[0]));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(arststages_ff[0]),
        .PRE(src_arst),
        .Q(arststages_ff[1]));
endmodule

(* DEF_VAL = "1'b0" *) (* DEST_SYNC_FF = "2" *) (* INIT_SYNC_FF = "0" *) 
(* INV_DEF_VAL = "1'b1" *) (* ORIG_REF_NAME = "xpm_cdc_async_rst" *) (* RST_ACTIVE_HIGH = "1" *) 
(* VERSION = "0" *) (* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) 
(* keep_hierarchy = "true" *) (* xpm_cdc = "ASYNC_RST" *) 
module bd_top_auto_cc_0_xpm_cdc_async_rst__10
   (src_arst,
    dest_clk,
    dest_arst);
  input src_arst;
  input dest_clk;
  output dest_arst;

  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "ASYNC_RST" *) wire [1:0]arststages_ff;
  wire dest_clk;
  wire src_arst;

  assign dest_arst = arststages_ff[1];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(1'b0),
        .PRE(src_arst),
        .Q(arststages_ff[0]));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(arststages_ff[0]),
        .PRE(src_arst),
        .Q(arststages_ff[1]));
endmodule

(* DEF_VAL = "1'b0" *) (* DEST_SYNC_FF = "2" *) (* INIT_SYNC_FF = "0" *) 
(* INV_DEF_VAL = "1'b1" *) (* ORIG_REF_NAME = "xpm_cdc_async_rst" *) (* RST_ACTIVE_HIGH = "1" *) 
(* VERSION = "0" *) (* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) 
(* keep_hierarchy = "true" *) (* xpm_cdc = "ASYNC_RST" *) 
module bd_top_auto_cc_0_xpm_cdc_async_rst__11
   (src_arst,
    dest_clk,
    dest_arst);
  input src_arst;
  input dest_clk;
  output dest_arst;

  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "ASYNC_RST" *) wire [1:0]arststages_ff;
  wire dest_clk;
  wire src_arst;

  assign dest_arst = arststages_ff[1];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(1'b0),
        .PRE(src_arst),
        .Q(arststages_ff[0]));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(arststages_ff[0]),
        .PRE(src_arst),
        .Q(arststages_ff[1]));
endmodule

(* DEF_VAL = "1'b0" *) (* DEST_SYNC_FF = "2" *) (* INIT_SYNC_FF = "0" *) 
(* INV_DEF_VAL = "1'b1" *) (* ORIG_REF_NAME = "xpm_cdc_async_rst" *) (* RST_ACTIVE_HIGH = "1" *) 
(* VERSION = "0" *) (* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) 
(* keep_hierarchy = "true" *) (* xpm_cdc = "ASYNC_RST" *) 
module bd_top_auto_cc_0_xpm_cdc_async_rst__12
   (src_arst,
    dest_clk,
    dest_arst);
  input src_arst;
  input dest_clk;
  output dest_arst;

  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "ASYNC_RST" *) wire [1:0]arststages_ff;
  wire dest_clk;
  wire src_arst;

  assign dest_arst = arststages_ff[1];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(1'b0),
        .PRE(src_arst),
        .Q(arststages_ff[0]));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(arststages_ff[0]),
        .PRE(src_arst),
        .Q(arststages_ff[1]));
endmodule

(* DEF_VAL = "1'b0" *) (* DEST_SYNC_FF = "2" *) (* INIT_SYNC_FF = "0" *) 
(* INV_DEF_VAL = "1'b1" *) (* ORIG_REF_NAME = "xpm_cdc_async_rst" *) (* RST_ACTIVE_HIGH = "1" *) 
(* VERSION = "0" *) (* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) 
(* keep_hierarchy = "true" *) (* xpm_cdc = "ASYNC_RST" *) 
module bd_top_auto_cc_0_xpm_cdc_async_rst__13
   (src_arst,
    dest_clk,
    dest_arst);
  input src_arst;
  input dest_clk;
  output dest_arst;

  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "ASYNC_RST" *) wire [1:0]arststages_ff;
  wire dest_clk;
  wire src_arst;

  assign dest_arst = arststages_ff[1];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(1'b0),
        .PRE(src_arst),
        .Q(arststages_ff[0]));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(arststages_ff[0]),
        .PRE(src_arst),
        .Q(arststages_ff[1]));
endmodule

(* DEF_VAL = "1'b0" *) (* DEST_SYNC_FF = "2" *) (* INIT_SYNC_FF = "0" *) 
(* INV_DEF_VAL = "1'b1" *) (* ORIG_REF_NAME = "xpm_cdc_async_rst" *) (* RST_ACTIVE_HIGH = "1" *) 
(* VERSION = "0" *) (* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) 
(* keep_hierarchy = "true" *) (* xpm_cdc = "ASYNC_RST" *) 
module bd_top_auto_cc_0_xpm_cdc_async_rst__5
   (src_arst,
    dest_clk,
    dest_arst);
  input src_arst;
  input dest_clk;
  output dest_arst;

  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "ASYNC_RST" *) wire [1:0]arststages_ff;
  wire dest_clk;
  wire src_arst;

  assign dest_arst = arststages_ff[1];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(1'b0),
        .PRE(src_arst),
        .Q(arststages_ff[0]));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(arststages_ff[0]),
        .PRE(src_arst),
        .Q(arststages_ff[1]));
endmodule

(* DEF_VAL = "1'b0" *) (* DEST_SYNC_FF = "2" *) (* INIT_SYNC_FF = "0" *) 
(* INV_DEF_VAL = "1'b1" *) (* ORIG_REF_NAME = "xpm_cdc_async_rst" *) (* RST_ACTIVE_HIGH = "1" *) 
(* VERSION = "0" *) (* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) 
(* keep_hierarchy = "true" *) (* xpm_cdc = "ASYNC_RST" *) 
module bd_top_auto_cc_0_xpm_cdc_async_rst__6
   (src_arst,
    dest_clk,
    dest_arst);
  input src_arst;
  input dest_clk;
  output dest_arst;

  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "ASYNC_RST" *) wire [1:0]arststages_ff;
  wire dest_clk;
  wire src_arst;

  assign dest_arst = arststages_ff[1];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(1'b0),
        .PRE(src_arst),
        .Q(arststages_ff[0]));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(arststages_ff[0]),
        .PRE(src_arst),
        .Q(arststages_ff[1]));
endmodule

(* DEF_VAL = "1'b0" *) (* DEST_SYNC_FF = "2" *) (* INIT_SYNC_FF = "0" *) 
(* INV_DEF_VAL = "1'b1" *) (* ORIG_REF_NAME = "xpm_cdc_async_rst" *) (* RST_ACTIVE_HIGH = "1" *) 
(* VERSION = "0" *) (* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) 
(* keep_hierarchy = "true" *) (* xpm_cdc = "ASYNC_RST" *) 
module bd_top_auto_cc_0_xpm_cdc_async_rst__7
   (src_arst,
    dest_clk,
    dest_arst);
  input src_arst;
  input dest_clk;
  output dest_arst;

  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "ASYNC_RST" *) wire [1:0]arststages_ff;
  wire dest_clk;
  wire src_arst;

  assign dest_arst = arststages_ff[1];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(1'b0),
        .PRE(src_arst),
        .Q(arststages_ff[0]));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(arststages_ff[0]),
        .PRE(src_arst),
        .Q(arststages_ff[1]));
endmodule

(* DEF_VAL = "1'b0" *) (* DEST_SYNC_FF = "2" *) (* INIT_SYNC_FF = "0" *) 
(* INV_DEF_VAL = "1'b1" *) (* ORIG_REF_NAME = "xpm_cdc_async_rst" *) (* RST_ACTIVE_HIGH = "1" *) 
(* VERSION = "0" *) (* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) 
(* keep_hierarchy = "true" *) (* xpm_cdc = "ASYNC_RST" *) 
module bd_top_auto_cc_0_xpm_cdc_async_rst__8
   (src_arst,
    dest_clk,
    dest_arst);
  input src_arst;
  input dest_clk;
  output dest_arst;

  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "ASYNC_RST" *) wire [1:0]arststages_ff;
  wire dest_clk;
  wire src_arst;

  assign dest_arst = arststages_ff[1];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(1'b0),
        .PRE(src_arst),
        .Q(arststages_ff[0]));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(arststages_ff[0]),
        .PRE(src_arst),
        .Q(arststages_ff[1]));
endmodule

(* DEF_VAL = "1'b0" *) (* DEST_SYNC_FF = "2" *) (* INIT_SYNC_FF = "0" *) 
(* INV_DEF_VAL = "1'b1" *) (* ORIG_REF_NAME = "xpm_cdc_async_rst" *) (* RST_ACTIVE_HIGH = "1" *) 
(* VERSION = "0" *) (* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) 
(* keep_hierarchy = "true" *) (* xpm_cdc = "ASYNC_RST" *) 
module bd_top_auto_cc_0_xpm_cdc_async_rst__9
   (src_arst,
    dest_clk,
    dest_arst);
  input src_arst;
  input dest_clk;
  output dest_arst;

  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "ASYNC_RST" *) wire [1:0]arststages_ff;
  wire dest_clk;
  wire src_arst;

  assign dest_arst = arststages_ff[1];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(1'b0),
        .PRE(src_arst),
        .Q(arststages_ff[0]));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "ASYNC_RST" *) 
  FDPE #(
    .INIT(1'b0)) 
    \arststages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(arststages_ff[0]),
        .PRE(src_arst),
        .Q(arststages_ff[1]));
endmodule

(* DEST_SYNC_FF = "3" *) (* INIT_SYNC_FF = "0" *) (* REG_OUTPUT = "1" *) 
(* SIM_ASSERT_CHK = "0" *) (* SIM_LOSSLESS_GRAY_CHK = "0" *) (* VERSION = "0" *) 
(* WIDTH = "4" *) (* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) 
(* keep_hierarchy = "true" *) (* xpm_cdc = "GRAY" *) 
module bd_top_auto_cc_0_xpm_cdc_gray
   (src_clk,
    src_in_bin,
    dest_clk,
    dest_out_bin);
  input src_clk;
  input [3:0]src_in_bin;
  input dest_clk;
  output [3:0]dest_out_bin;

  wire [3:0]async_path;
  wire [2:0]binval;
  wire dest_clk;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[0] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[1] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[2] ;
  wire [3:0]dest_out_bin;
  wire [2:0]gray_enc;
  wire src_clk;
  wire [3:0]src_in_bin;

  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[0]),
        .Q(\dest_graysync_ff[0] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[1]),
        .Q(\dest_graysync_ff[0] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[2]),
        .Q(\dest_graysync_ff[0] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[3]),
        .Q(\dest_graysync_ff[0] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [0]),
        .Q(\dest_graysync_ff[1] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [1]),
        .Q(\dest_graysync_ff[1] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [2]),
        .Q(\dest_graysync_ff[1] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [3]),
        .Q(\dest_graysync_ff[1] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [0]),
        .Q(\dest_graysync_ff[2] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [1]),
        .Q(\dest_graysync_ff[2] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [2]),
        .Q(\dest_graysync_ff[2] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [3]),
        .Q(\dest_graysync_ff[2] [3]),
        .R(1'b0));
  LUT4 #(
    .INIT(16'h6996)) 
    \dest_out_bin_ff[0]_i_1 
       (.I0(\dest_graysync_ff[2] [0]),
        .I1(\dest_graysync_ff[2] [2]),
        .I2(\dest_graysync_ff[2] [3]),
        .I3(\dest_graysync_ff[2] [1]),
        .O(binval[0]));
  LUT3 #(
    .INIT(8'h96)) 
    \dest_out_bin_ff[1]_i_1 
       (.I0(\dest_graysync_ff[2] [1]),
        .I1(\dest_graysync_ff[2] [3]),
        .I2(\dest_graysync_ff[2] [2]),
        .O(binval[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \dest_out_bin_ff[2]_i_1 
       (.I0(\dest_graysync_ff[2] [2]),
        .I1(\dest_graysync_ff[2] [3]),
        .O(binval[2]));
  FDRE \dest_out_bin_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[0]),
        .Q(dest_out_bin[0]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[1]),
        .Q(dest_out_bin[1]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[2]),
        .Q(dest_out_bin[2]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[2] [3]),
        .Q(dest_out_bin[3]),
        .R(1'b0));
  (* SOFT_HLUTNM = "soft_lutpair6" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[0]_i_1 
       (.I0(src_in_bin[1]),
        .I1(src_in_bin[0]),
        .O(gray_enc[0]));
  (* SOFT_HLUTNM = "soft_lutpair6" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[1]_i_1 
       (.I0(src_in_bin[2]),
        .I1(src_in_bin[1]),
        .O(gray_enc[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[2]_i_1 
       (.I0(src_in_bin[3]),
        .I1(src_in_bin[2]),
        .O(gray_enc[2]));
  FDRE \src_gray_ff_reg[0] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[0]),
        .Q(async_path[0]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[1] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[1]),
        .Q(async_path[1]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[2] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[2]),
        .Q(async_path[2]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[3] 
       (.C(src_clk),
        .CE(1'b1),
        .D(src_in_bin[3]),
        .Q(async_path[3]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "3" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_gray" *) 
(* REG_OUTPUT = "1" *) (* SIM_ASSERT_CHK = "0" *) (* SIM_LOSSLESS_GRAY_CHK = "0" *) 
(* VERSION = "0" *) (* WIDTH = "4" *) (* XPM_MODULE = "TRUE" *) 
(* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) (* xpm_cdc = "GRAY" *) 
module bd_top_auto_cc_0_xpm_cdc_gray__10
   (src_clk,
    src_in_bin,
    dest_clk,
    dest_out_bin);
  input src_clk;
  input [3:0]src_in_bin;
  input dest_clk;
  output [3:0]dest_out_bin;

  wire [3:0]async_path;
  wire [2:0]binval;
  wire dest_clk;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[0] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[1] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[2] ;
  wire [3:0]dest_out_bin;
  wire [2:0]gray_enc;
  wire src_clk;
  wire [3:0]src_in_bin;

  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[0]),
        .Q(\dest_graysync_ff[0] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[1]),
        .Q(\dest_graysync_ff[0] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[2]),
        .Q(\dest_graysync_ff[0] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[3]),
        .Q(\dest_graysync_ff[0] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [0]),
        .Q(\dest_graysync_ff[1] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [1]),
        .Q(\dest_graysync_ff[1] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [2]),
        .Q(\dest_graysync_ff[1] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [3]),
        .Q(\dest_graysync_ff[1] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [0]),
        .Q(\dest_graysync_ff[2] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [1]),
        .Q(\dest_graysync_ff[2] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [2]),
        .Q(\dest_graysync_ff[2] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [3]),
        .Q(\dest_graysync_ff[2] [3]),
        .R(1'b0));
  LUT4 #(
    .INIT(16'h6996)) 
    \dest_out_bin_ff[0]_i_1 
       (.I0(\dest_graysync_ff[2] [0]),
        .I1(\dest_graysync_ff[2] [2]),
        .I2(\dest_graysync_ff[2] [3]),
        .I3(\dest_graysync_ff[2] [1]),
        .O(binval[0]));
  LUT3 #(
    .INIT(8'h96)) 
    \dest_out_bin_ff[1]_i_1 
       (.I0(\dest_graysync_ff[2] [1]),
        .I1(\dest_graysync_ff[2] [3]),
        .I2(\dest_graysync_ff[2] [2]),
        .O(binval[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \dest_out_bin_ff[2]_i_1 
       (.I0(\dest_graysync_ff[2] [2]),
        .I1(\dest_graysync_ff[2] [3]),
        .O(binval[2]));
  FDRE \dest_out_bin_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[0]),
        .Q(dest_out_bin[0]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[1]),
        .Q(dest_out_bin[1]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[2]),
        .Q(dest_out_bin[2]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[2] [3]),
        .Q(dest_out_bin[3]),
        .R(1'b0));
  (* SOFT_HLUTNM = "soft_lutpair10" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[0]_i_1 
       (.I0(src_in_bin[1]),
        .I1(src_in_bin[0]),
        .O(gray_enc[0]));
  (* SOFT_HLUTNM = "soft_lutpair10" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[1]_i_1 
       (.I0(src_in_bin[2]),
        .I1(src_in_bin[1]),
        .O(gray_enc[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[2]_i_1 
       (.I0(src_in_bin[3]),
        .I1(src_in_bin[2]),
        .O(gray_enc[2]));
  FDRE \src_gray_ff_reg[0] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[0]),
        .Q(async_path[0]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[1] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[1]),
        .Q(async_path[1]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[2] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[2]),
        .Q(async_path[2]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[3] 
       (.C(src_clk),
        .CE(1'b1),
        .D(src_in_bin[3]),
        .Q(async_path[3]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "3" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_gray" *) 
(* REG_OUTPUT = "1" *) (* SIM_ASSERT_CHK = "0" *) (* SIM_LOSSLESS_GRAY_CHK = "0" *) 
(* VERSION = "0" *) (* WIDTH = "4" *) (* XPM_MODULE = "TRUE" *) 
(* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) (* xpm_cdc = "GRAY" *) 
module bd_top_auto_cc_0_xpm_cdc_gray__11
   (src_clk,
    src_in_bin,
    dest_clk,
    dest_out_bin);
  input src_clk;
  input [3:0]src_in_bin;
  input dest_clk;
  output [3:0]dest_out_bin;

  wire [3:0]async_path;
  wire [2:0]binval;
  wire dest_clk;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[0] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[1] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[2] ;
  wire [3:0]dest_out_bin;
  wire [2:0]gray_enc;
  wire src_clk;
  wire [3:0]src_in_bin;

  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[0]),
        .Q(\dest_graysync_ff[0] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[1]),
        .Q(\dest_graysync_ff[0] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[2]),
        .Q(\dest_graysync_ff[0] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[3]),
        .Q(\dest_graysync_ff[0] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [0]),
        .Q(\dest_graysync_ff[1] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [1]),
        .Q(\dest_graysync_ff[1] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [2]),
        .Q(\dest_graysync_ff[1] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [3]),
        .Q(\dest_graysync_ff[1] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [0]),
        .Q(\dest_graysync_ff[2] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [1]),
        .Q(\dest_graysync_ff[2] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [2]),
        .Q(\dest_graysync_ff[2] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [3]),
        .Q(\dest_graysync_ff[2] [3]),
        .R(1'b0));
  LUT4 #(
    .INIT(16'h6996)) 
    \dest_out_bin_ff[0]_i_1 
       (.I0(\dest_graysync_ff[2] [0]),
        .I1(\dest_graysync_ff[2] [2]),
        .I2(\dest_graysync_ff[2] [3]),
        .I3(\dest_graysync_ff[2] [1]),
        .O(binval[0]));
  LUT3 #(
    .INIT(8'h96)) 
    \dest_out_bin_ff[1]_i_1 
       (.I0(\dest_graysync_ff[2] [1]),
        .I1(\dest_graysync_ff[2] [3]),
        .I2(\dest_graysync_ff[2] [2]),
        .O(binval[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \dest_out_bin_ff[2]_i_1 
       (.I0(\dest_graysync_ff[2] [2]),
        .I1(\dest_graysync_ff[2] [3]),
        .O(binval[2]));
  FDRE \dest_out_bin_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[0]),
        .Q(dest_out_bin[0]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[1]),
        .Q(dest_out_bin[1]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[2]),
        .Q(dest_out_bin[2]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[2] [3]),
        .Q(dest_out_bin[3]),
        .R(1'b0));
  (* SOFT_HLUTNM = "soft_lutpair11" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[0]_i_1 
       (.I0(src_in_bin[1]),
        .I1(src_in_bin[0]),
        .O(gray_enc[0]));
  (* SOFT_HLUTNM = "soft_lutpair11" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[1]_i_1 
       (.I0(src_in_bin[2]),
        .I1(src_in_bin[1]),
        .O(gray_enc[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[2]_i_1 
       (.I0(src_in_bin[3]),
        .I1(src_in_bin[2]),
        .O(gray_enc[2]));
  FDRE \src_gray_ff_reg[0] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[0]),
        .Q(async_path[0]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[1] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[1]),
        .Q(async_path[1]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[2] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[2]),
        .Q(async_path[2]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[3] 
       (.C(src_clk),
        .CE(1'b1),
        .D(src_in_bin[3]),
        .Q(async_path[3]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "3" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_gray" *) 
(* REG_OUTPUT = "1" *) (* SIM_ASSERT_CHK = "0" *) (* SIM_LOSSLESS_GRAY_CHK = "0" *) 
(* VERSION = "0" *) (* WIDTH = "4" *) (* XPM_MODULE = "TRUE" *) 
(* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) (* xpm_cdc = "GRAY" *) 
module bd_top_auto_cc_0_xpm_cdc_gray__12
   (src_clk,
    src_in_bin,
    dest_clk,
    dest_out_bin);
  input src_clk;
  input [3:0]src_in_bin;
  input dest_clk;
  output [3:0]dest_out_bin;

  wire [3:0]async_path;
  wire [2:0]binval;
  wire dest_clk;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[0] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[1] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[2] ;
  wire [3:0]dest_out_bin;
  wire [2:0]gray_enc;
  wire src_clk;
  wire [3:0]src_in_bin;

  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[0]),
        .Q(\dest_graysync_ff[0] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[1]),
        .Q(\dest_graysync_ff[0] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[2]),
        .Q(\dest_graysync_ff[0] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[3]),
        .Q(\dest_graysync_ff[0] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [0]),
        .Q(\dest_graysync_ff[1] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [1]),
        .Q(\dest_graysync_ff[1] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [2]),
        .Q(\dest_graysync_ff[1] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [3]),
        .Q(\dest_graysync_ff[1] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [0]),
        .Q(\dest_graysync_ff[2] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [1]),
        .Q(\dest_graysync_ff[2] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [2]),
        .Q(\dest_graysync_ff[2] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [3]),
        .Q(\dest_graysync_ff[2] [3]),
        .R(1'b0));
  LUT4 #(
    .INIT(16'h6996)) 
    \dest_out_bin_ff[0]_i_1 
       (.I0(\dest_graysync_ff[2] [0]),
        .I1(\dest_graysync_ff[2] [2]),
        .I2(\dest_graysync_ff[2] [3]),
        .I3(\dest_graysync_ff[2] [1]),
        .O(binval[0]));
  LUT3 #(
    .INIT(8'h96)) 
    \dest_out_bin_ff[1]_i_1 
       (.I0(\dest_graysync_ff[2] [1]),
        .I1(\dest_graysync_ff[2] [3]),
        .I2(\dest_graysync_ff[2] [2]),
        .O(binval[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \dest_out_bin_ff[2]_i_1 
       (.I0(\dest_graysync_ff[2] [2]),
        .I1(\dest_graysync_ff[2] [3]),
        .O(binval[2]));
  FDRE \dest_out_bin_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[0]),
        .Q(dest_out_bin[0]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[1]),
        .Q(dest_out_bin[1]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[2]),
        .Q(dest_out_bin[2]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[2] [3]),
        .Q(dest_out_bin[3]),
        .R(1'b0));
  (* SOFT_HLUTNM = "soft_lutpair15" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[0]_i_1 
       (.I0(src_in_bin[1]),
        .I1(src_in_bin[0]),
        .O(gray_enc[0]));
  (* SOFT_HLUTNM = "soft_lutpair15" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[1]_i_1 
       (.I0(src_in_bin[2]),
        .I1(src_in_bin[1]),
        .O(gray_enc[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[2]_i_1 
       (.I0(src_in_bin[3]),
        .I1(src_in_bin[2]),
        .O(gray_enc[2]));
  FDRE \src_gray_ff_reg[0] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[0]),
        .Q(async_path[0]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[1] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[1]),
        .Q(async_path[1]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[2] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[2]),
        .Q(async_path[2]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[3] 
       (.C(src_clk),
        .CE(1'b1),
        .D(src_in_bin[3]),
        .Q(async_path[3]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "3" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_gray" *) 
(* REG_OUTPUT = "1" *) (* SIM_ASSERT_CHK = "0" *) (* SIM_LOSSLESS_GRAY_CHK = "0" *) 
(* VERSION = "0" *) (* WIDTH = "4" *) (* XPM_MODULE = "TRUE" *) 
(* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) (* xpm_cdc = "GRAY" *) 
module bd_top_auto_cc_0_xpm_cdc_gray__13
   (src_clk,
    src_in_bin,
    dest_clk,
    dest_out_bin);
  input src_clk;
  input [3:0]src_in_bin;
  input dest_clk;
  output [3:0]dest_out_bin;

  wire [3:0]async_path;
  wire [2:0]binval;
  wire dest_clk;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[0] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[1] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[2] ;
  wire [3:0]dest_out_bin;
  wire [2:0]gray_enc;
  wire src_clk;
  wire [3:0]src_in_bin;

  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[0]),
        .Q(\dest_graysync_ff[0] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[1]),
        .Q(\dest_graysync_ff[0] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[2]),
        .Q(\dest_graysync_ff[0] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[3]),
        .Q(\dest_graysync_ff[0] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [0]),
        .Q(\dest_graysync_ff[1] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [1]),
        .Q(\dest_graysync_ff[1] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [2]),
        .Q(\dest_graysync_ff[1] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [3]),
        .Q(\dest_graysync_ff[1] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [0]),
        .Q(\dest_graysync_ff[2] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [1]),
        .Q(\dest_graysync_ff[2] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [2]),
        .Q(\dest_graysync_ff[2] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [3]),
        .Q(\dest_graysync_ff[2] [3]),
        .R(1'b0));
  LUT4 #(
    .INIT(16'h6996)) 
    \dest_out_bin_ff[0]_i_1 
       (.I0(\dest_graysync_ff[2] [0]),
        .I1(\dest_graysync_ff[2] [2]),
        .I2(\dest_graysync_ff[2] [3]),
        .I3(\dest_graysync_ff[2] [1]),
        .O(binval[0]));
  LUT3 #(
    .INIT(8'h96)) 
    \dest_out_bin_ff[1]_i_1 
       (.I0(\dest_graysync_ff[2] [1]),
        .I1(\dest_graysync_ff[2] [3]),
        .I2(\dest_graysync_ff[2] [2]),
        .O(binval[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \dest_out_bin_ff[2]_i_1 
       (.I0(\dest_graysync_ff[2] [2]),
        .I1(\dest_graysync_ff[2] [3]),
        .O(binval[2]));
  FDRE \dest_out_bin_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[0]),
        .Q(dest_out_bin[0]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[1]),
        .Q(dest_out_bin[1]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[2]),
        .Q(dest_out_bin[2]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[2] [3]),
        .Q(dest_out_bin[3]),
        .R(1'b0));
  (* SOFT_HLUTNM = "soft_lutpair16" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[0]_i_1 
       (.I0(src_in_bin[1]),
        .I1(src_in_bin[0]),
        .O(gray_enc[0]));
  (* SOFT_HLUTNM = "soft_lutpair16" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[1]_i_1 
       (.I0(src_in_bin[2]),
        .I1(src_in_bin[1]),
        .O(gray_enc[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[2]_i_1 
       (.I0(src_in_bin[3]),
        .I1(src_in_bin[2]),
        .O(gray_enc[2]));
  FDRE \src_gray_ff_reg[0] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[0]),
        .Q(async_path[0]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[1] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[1]),
        .Q(async_path[1]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[2] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[2]),
        .Q(async_path[2]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[3] 
       (.C(src_clk),
        .CE(1'b1),
        .D(src_in_bin[3]),
        .Q(async_path[3]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "3" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_gray" *) 
(* REG_OUTPUT = "1" *) (* SIM_ASSERT_CHK = "0" *) (* SIM_LOSSLESS_GRAY_CHK = "0" *) 
(* VERSION = "0" *) (* WIDTH = "4" *) (* XPM_MODULE = "TRUE" *) 
(* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) (* xpm_cdc = "GRAY" *) 
module bd_top_auto_cc_0_xpm_cdc_gray__14
   (src_clk,
    src_in_bin,
    dest_clk,
    dest_out_bin);
  input src_clk;
  input [3:0]src_in_bin;
  input dest_clk;
  output [3:0]dest_out_bin;

  wire [3:0]async_path;
  wire [2:0]binval;
  wire dest_clk;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[0] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[1] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[2] ;
  wire [3:0]dest_out_bin;
  wire [2:0]gray_enc;
  wire src_clk;
  wire [3:0]src_in_bin;

  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[0]),
        .Q(\dest_graysync_ff[0] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[1]),
        .Q(\dest_graysync_ff[0] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[2]),
        .Q(\dest_graysync_ff[0] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[3]),
        .Q(\dest_graysync_ff[0] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [0]),
        .Q(\dest_graysync_ff[1] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [1]),
        .Q(\dest_graysync_ff[1] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [2]),
        .Q(\dest_graysync_ff[1] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [3]),
        .Q(\dest_graysync_ff[1] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [0]),
        .Q(\dest_graysync_ff[2] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [1]),
        .Q(\dest_graysync_ff[2] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [2]),
        .Q(\dest_graysync_ff[2] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [3]),
        .Q(\dest_graysync_ff[2] [3]),
        .R(1'b0));
  LUT4 #(
    .INIT(16'h6996)) 
    \dest_out_bin_ff[0]_i_1 
       (.I0(\dest_graysync_ff[2] [0]),
        .I1(\dest_graysync_ff[2] [2]),
        .I2(\dest_graysync_ff[2] [3]),
        .I3(\dest_graysync_ff[2] [1]),
        .O(binval[0]));
  LUT3 #(
    .INIT(8'h96)) 
    \dest_out_bin_ff[1]_i_1 
       (.I0(\dest_graysync_ff[2] [1]),
        .I1(\dest_graysync_ff[2] [3]),
        .I2(\dest_graysync_ff[2] [2]),
        .O(binval[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \dest_out_bin_ff[2]_i_1 
       (.I0(\dest_graysync_ff[2] [2]),
        .I1(\dest_graysync_ff[2] [3]),
        .O(binval[2]));
  FDRE \dest_out_bin_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[0]),
        .Q(dest_out_bin[0]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[1]),
        .Q(dest_out_bin[1]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[2]),
        .Q(dest_out_bin[2]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[2] [3]),
        .Q(dest_out_bin[3]),
        .R(1'b0));
  (* SOFT_HLUTNM = "soft_lutpair20" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[0]_i_1 
       (.I0(src_in_bin[1]),
        .I1(src_in_bin[0]),
        .O(gray_enc[0]));
  (* SOFT_HLUTNM = "soft_lutpair20" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[1]_i_1 
       (.I0(src_in_bin[2]),
        .I1(src_in_bin[1]),
        .O(gray_enc[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[2]_i_1 
       (.I0(src_in_bin[3]),
        .I1(src_in_bin[2]),
        .O(gray_enc[2]));
  FDRE \src_gray_ff_reg[0] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[0]),
        .Q(async_path[0]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[1] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[1]),
        .Q(async_path[1]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[2] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[2]),
        .Q(async_path[2]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[3] 
       (.C(src_clk),
        .CE(1'b1),
        .D(src_in_bin[3]),
        .Q(async_path[3]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "3" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_gray" *) 
(* REG_OUTPUT = "1" *) (* SIM_ASSERT_CHK = "0" *) (* SIM_LOSSLESS_GRAY_CHK = "0" *) 
(* VERSION = "0" *) (* WIDTH = "4" *) (* XPM_MODULE = "TRUE" *) 
(* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) (* xpm_cdc = "GRAY" *) 
module bd_top_auto_cc_0_xpm_cdc_gray__15
   (src_clk,
    src_in_bin,
    dest_clk,
    dest_out_bin);
  input src_clk;
  input [3:0]src_in_bin;
  input dest_clk;
  output [3:0]dest_out_bin;

  wire [3:0]async_path;
  wire [2:0]binval;
  wire dest_clk;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[0] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[1] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[2] ;
  wire [3:0]dest_out_bin;
  wire [2:0]gray_enc;
  wire src_clk;
  wire [3:0]src_in_bin;

  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[0]),
        .Q(\dest_graysync_ff[0] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[1]),
        .Q(\dest_graysync_ff[0] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[2]),
        .Q(\dest_graysync_ff[0] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[3]),
        .Q(\dest_graysync_ff[0] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [0]),
        .Q(\dest_graysync_ff[1] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [1]),
        .Q(\dest_graysync_ff[1] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [2]),
        .Q(\dest_graysync_ff[1] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [3]),
        .Q(\dest_graysync_ff[1] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [0]),
        .Q(\dest_graysync_ff[2] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [1]),
        .Q(\dest_graysync_ff[2] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [2]),
        .Q(\dest_graysync_ff[2] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [3]),
        .Q(\dest_graysync_ff[2] [3]),
        .R(1'b0));
  LUT4 #(
    .INIT(16'h6996)) 
    \dest_out_bin_ff[0]_i_1 
       (.I0(\dest_graysync_ff[2] [0]),
        .I1(\dest_graysync_ff[2] [2]),
        .I2(\dest_graysync_ff[2] [3]),
        .I3(\dest_graysync_ff[2] [1]),
        .O(binval[0]));
  LUT3 #(
    .INIT(8'h96)) 
    \dest_out_bin_ff[1]_i_1 
       (.I0(\dest_graysync_ff[2] [1]),
        .I1(\dest_graysync_ff[2] [3]),
        .I2(\dest_graysync_ff[2] [2]),
        .O(binval[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \dest_out_bin_ff[2]_i_1 
       (.I0(\dest_graysync_ff[2] [2]),
        .I1(\dest_graysync_ff[2] [3]),
        .O(binval[2]));
  FDRE \dest_out_bin_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[0]),
        .Q(dest_out_bin[0]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[1]),
        .Q(dest_out_bin[1]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[2]),
        .Q(dest_out_bin[2]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[2] [3]),
        .Q(dest_out_bin[3]),
        .R(1'b0));
  (* SOFT_HLUTNM = "soft_lutpair21" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[0]_i_1 
       (.I0(src_in_bin[1]),
        .I1(src_in_bin[0]),
        .O(gray_enc[0]));
  (* SOFT_HLUTNM = "soft_lutpair21" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[1]_i_1 
       (.I0(src_in_bin[2]),
        .I1(src_in_bin[1]),
        .O(gray_enc[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[2]_i_1 
       (.I0(src_in_bin[3]),
        .I1(src_in_bin[2]),
        .O(gray_enc[2]));
  FDRE \src_gray_ff_reg[0] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[0]),
        .Q(async_path[0]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[1] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[1]),
        .Q(async_path[1]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[2] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[2]),
        .Q(async_path[2]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[3] 
       (.C(src_clk),
        .CE(1'b1),
        .D(src_in_bin[3]),
        .Q(async_path[3]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "3" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_gray" *) 
(* REG_OUTPUT = "1" *) (* SIM_ASSERT_CHK = "0" *) (* SIM_LOSSLESS_GRAY_CHK = "0" *) 
(* VERSION = "0" *) (* WIDTH = "4" *) (* XPM_MODULE = "TRUE" *) 
(* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) (* xpm_cdc = "GRAY" *) 
module bd_top_auto_cc_0_xpm_cdc_gray__16
   (src_clk,
    src_in_bin,
    dest_clk,
    dest_out_bin);
  input src_clk;
  input [3:0]src_in_bin;
  input dest_clk;
  output [3:0]dest_out_bin;

  wire [3:0]async_path;
  wire [2:0]binval;
  wire dest_clk;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[0] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[1] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[2] ;
  wire [3:0]dest_out_bin;
  wire [2:0]gray_enc;
  wire src_clk;
  wire [3:0]src_in_bin;

  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[0]),
        .Q(\dest_graysync_ff[0] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[1]),
        .Q(\dest_graysync_ff[0] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[2]),
        .Q(\dest_graysync_ff[0] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[3]),
        .Q(\dest_graysync_ff[0] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [0]),
        .Q(\dest_graysync_ff[1] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [1]),
        .Q(\dest_graysync_ff[1] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [2]),
        .Q(\dest_graysync_ff[1] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [3]),
        .Q(\dest_graysync_ff[1] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [0]),
        .Q(\dest_graysync_ff[2] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [1]),
        .Q(\dest_graysync_ff[2] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [2]),
        .Q(\dest_graysync_ff[2] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [3]),
        .Q(\dest_graysync_ff[2] [3]),
        .R(1'b0));
  LUT4 #(
    .INIT(16'h6996)) 
    \dest_out_bin_ff[0]_i_1 
       (.I0(\dest_graysync_ff[2] [0]),
        .I1(\dest_graysync_ff[2] [2]),
        .I2(\dest_graysync_ff[2] [3]),
        .I3(\dest_graysync_ff[2] [1]),
        .O(binval[0]));
  LUT3 #(
    .INIT(8'h96)) 
    \dest_out_bin_ff[1]_i_1 
       (.I0(\dest_graysync_ff[2] [1]),
        .I1(\dest_graysync_ff[2] [3]),
        .I2(\dest_graysync_ff[2] [2]),
        .O(binval[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \dest_out_bin_ff[2]_i_1 
       (.I0(\dest_graysync_ff[2] [2]),
        .I1(\dest_graysync_ff[2] [3]),
        .O(binval[2]));
  FDRE \dest_out_bin_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[0]),
        .Q(dest_out_bin[0]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[1]),
        .Q(dest_out_bin[1]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[2]),
        .Q(dest_out_bin[2]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[2] [3]),
        .Q(dest_out_bin[3]),
        .R(1'b0));
  (* SOFT_HLUTNM = "soft_lutpair0" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[0]_i_1 
       (.I0(src_in_bin[1]),
        .I1(src_in_bin[0]),
        .O(gray_enc[0]));
  (* SOFT_HLUTNM = "soft_lutpair0" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[1]_i_1 
       (.I0(src_in_bin[2]),
        .I1(src_in_bin[1]),
        .O(gray_enc[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[2]_i_1 
       (.I0(src_in_bin[3]),
        .I1(src_in_bin[2]),
        .O(gray_enc[2]));
  FDRE \src_gray_ff_reg[0] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[0]),
        .Q(async_path[0]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[1] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[1]),
        .Q(async_path[1]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[2] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[2]),
        .Q(async_path[2]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[3] 
       (.C(src_clk),
        .CE(1'b1),
        .D(src_in_bin[3]),
        .Q(async_path[3]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "3" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_gray" *) 
(* REG_OUTPUT = "1" *) (* SIM_ASSERT_CHK = "0" *) (* SIM_LOSSLESS_GRAY_CHK = "0" *) 
(* VERSION = "0" *) (* WIDTH = "4" *) (* XPM_MODULE = "TRUE" *) 
(* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) (* xpm_cdc = "GRAY" *) 
module bd_top_auto_cc_0_xpm_cdc_gray__17
   (src_clk,
    src_in_bin,
    dest_clk,
    dest_out_bin);
  input src_clk;
  input [3:0]src_in_bin;
  input dest_clk;
  output [3:0]dest_out_bin;

  wire [3:0]async_path;
  wire [2:0]binval;
  wire dest_clk;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[0] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[1] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[2] ;
  wire [3:0]dest_out_bin;
  wire [2:0]gray_enc;
  wire src_clk;
  wire [3:0]src_in_bin;

  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[0]),
        .Q(\dest_graysync_ff[0] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[1]),
        .Q(\dest_graysync_ff[0] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[2]),
        .Q(\dest_graysync_ff[0] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[3]),
        .Q(\dest_graysync_ff[0] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [0]),
        .Q(\dest_graysync_ff[1] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [1]),
        .Q(\dest_graysync_ff[1] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [2]),
        .Q(\dest_graysync_ff[1] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [3]),
        .Q(\dest_graysync_ff[1] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [0]),
        .Q(\dest_graysync_ff[2] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [1]),
        .Q(\dest_graysync_ff[2] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [2]),
        .Q(\dest_graysync_ff[2] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [3]),
        .Q(\dest_graysync_ff[2] [3]),
        .R(1'b0));
  LUT4 #(
    .INIT(16'h6996)) 
    \dest_out_bin_ff[0]_i_1 
       (.I0(\dest_graysync_ff[2] [0]),
        .I1(\dest_graysync_ff[2] [2]),
        .I2(\dest_graysync_ff[2] [3]),
        .I3(\dest_graysync_ff[2] [1]),
        .O(binval[0]));
  LUT3 #(
    .INIT(8'h96)) 
    \dest_out_bin_ff[1]_i_1 
       (.I0(\dest_graysync_ff[2] [1]),
        .I1(\dest_graysync_ff[2] [3]),
        .I2(\dest_graysync_ff[2] [2]),
        .O(binval[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \dest_out_bin_ff[2]_i_1 
       (.I0(\dest_graysync_ff[2] [2]),
        .I1(\dest_graysync_ff[2] [3]),
        .O(binval[2]));
  FDRE \dest_out_bin_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[0]),
        .Q(dest_out_bin[0]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[1]),
        .Q(dest_out_bin[1]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[2]),
        .Q(dest_out_bin[2]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[2] [3]),
        .Q(dest_out_bin[3]),
        .R(1'b0));
  (* SOFT_HLUTNM = "soft_lutpair1" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[0]_i_1 
       (.I0(src_in_bin[1]),
        .I1(src_in_bin[0]),
        .O(gray_enc[0]));
  (* SOFT_HLUTNM = "soft_lutpair1" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[1]_i_1 
       (.I0(src_in_bin[2]),
        .I1(src_in_bin[1]),
        .O(gray_enc[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[2]_i_1 
       (.I0(src_in_bin[3]),
        .I1(src_in_bin[2]),
        .O(gray_enc[2]));
  FDRE \src_gray_ff_reg[0] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[0]),
        .Q(async_path[0]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[1] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[1]),
        .Q(async_path[1]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[2] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[2]),
        .Q(async_path[2]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[3] 
       (.C(src_clk),
        .CE(1'b1),
        .D(src_in_bin[3]),
        .Q(async_path[3]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "3" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_gray" *) 
(* REG_OUTPUT = "1" *) (* SIM_ASSERT_CHK = "0" *) (* SIM_LOSSLESS_GRAY_CHK = "0" *) 
(* VERSION = "0" *) (* WIDTH = "4" *) (* XPM_MODULE = "TRUE" *) 
(* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) (* xpm_cdc = "GRAY" *) 
module bd_top_auto_cc_0_xpm_cdc_gray__18
   (src_clk,
    src_in_bin,
    dest_clk,
    dest_out_bin);
  input src_clk;
  input [3:0]src_in_bin;
  input dest_clk;
  output [3:0]dest_out_bin;

  wire [3:0]async_path;
  wire [2:0]binval;
  wire dest_clk;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[0] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[1] ;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "GRAY" *) wire [3:0]\dest_graysync_ff[2] ;
  wire [3:0]dest_out_bin;
  wire [2:0]gray_enc;
  wire src_clk;
  wire [3:0]src_in_bin;

  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[0]),
        .Q(\dest_graysync_ff[0] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[1]),
        .Q(\dest_graysync_ff[0] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[2]),
        .Q(\dest_graysync_ff[0] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[0][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(async_path[3]),
        .Q(\dest_graysync_ff[0] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [0]),
        .Q(\dest_graysync_ff[1] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [1]),
        .Q(\dest_graysync_ff[1] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [2]),
        .Q(\dest_graysync_ff[1] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[1][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[0] [3]),
        .Q(\dest_graysync_ff[1] [3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [0]),
        .Q(\dest_graysync_ff[2] [0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [1]),
        .Q(\dest_graysync_ff[2] [1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [2]),
        .Q(\dest_graysync_ff[2] [2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "GRAY" *) 
  FDRE \dest_graysync_ff_reg[2][3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[1] [3]),
        .Q(\dest_graysync_ff[2] [3]),
        .R(1'b0));
  LUT4 #(
    .INIT(16'h6996)) 
    \dest_out_bin_ff[0]_i_1 
       (.I0(\dest_graysync_ff[2] [0]),
        .I1(\dest_graysync_ff[2] [2]),
        .I2(\dest_graysync_ff[2] [3]),
        .I3(\dest_graysync_ff[2] [1]),
        .O(binval[0]));
  LUT3 #(
    .INIT(8'h96)) 
    \dest_out_bin_ff[1]_i_1 
       (.I0(\dest_graysync_ff[2] [1]),
        .I1(\dest_graysync_ff[2] [3]),
        .I2(\dest_graysync_ff[2] [2]),
        .O(binval[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \dest_out_bin_ff[2]_i_1 
       (.I0(\dest_graysync_ff[2] [2]),
        .I1(\dest_graysync_ff[2] [3]),
        .O(binval[2]));
  FDRE \dest_out_bin_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[0]),
        .Q(dest_out_bin[0]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[1]),
        .Q(dest_out_bin[1]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(binval[2]),
        .Q(dest_out_bin[2]),
        .R(1'b0));
  FDRE \dest_out_bin_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(\dest_graysync_ff[2] [3]),
        .Q(dest_out_bin[3]),
        .R(1'b0));
  (* SOFT_HLUTNM = "soft_lutpair5" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[0]_i_1 
       (.I0(src_in_bin[1]),
        .I1(src_in_bin[0]),
        .O(gray_enc[0]));
  (* SOFT_HLUTNM = "soft_lutpair5" *) 
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[1]_i_1 
       (.I0(src_in_bin[2]),
        .I1(src_in_bin[1]),
        .O(gray_enc[1]));
  LUT2 #(
    .INIT(4'h6)) 
    \src_gray_ff[2]_i_1 
       (.I0(src_in_bin[3]),
        .I1(src_in_bin[2]),
        .O(gray_enc[2]));
  FDRE \src_gray_ff_reg[0] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[0]),
        .Q(async_path[0]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[1] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[1]),
        .Q(async_path[1]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[2] 
       (.C(src_clk),
        .CE(1'b1),
        .D(gray_enc[2]),
        .Q(async_path[2]),
        .R(1'b0));
  FDRE \src_gray_ff_reg[3] 
       (.C(src_clk),
        .CE(1'b1),
        .D(src_in_bin[3]),
        .Q(async_path[3]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "4" *) (* INIT_SYNC_FF = "0" *) (* SIM_ASSERT_CHK = "0" *) 
(* SRC_INPUT_REG = "1" *) (* VERSION = "0" *) (* XPM_MODULE = "TRUE" *) 
(* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) (* xpm_cdc = "SINGLE" *) 
module bd_top_auto_cc_0_xpm_cdc_single
   (src_clk,
    src_in,
    dest_clk,
    dest_out);
  input src_clk;
  input src_in;
  input dest_clk;
  output dest_out;

  wire dest_clk;
  wire [0:0]p_0_in;
  wire src_clk;
  wire src_in;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "SINGLE" *) wire [3:0]syncstages_ff;

  assign dest_out = syncstages_ff[3];
  FDRE src_ff_reg
       (.C(src_clk),
        .CE(1'b1),
        .D(src_in),
        .Q(p_0_in),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(p_0_in),
        .Q(syncstages_ff[0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[0]),
        .Q(syncstages_ff[1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[1]),
        .Q(syncstages_ff[2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[2]),
        .Q(syncstages_ff[3]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "4" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_single" *) 
(* SIM_ASSERT_CHK = "0" *) (* SRC_INPUT_REG = "1" *) (* VERSION = "0" *) 
(* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) 
(* xpm_cdc = "SINGLE" *) 
module bd_top_auto_cc_0_xpm_cdc_single__3
   (src_clk,
    src_in,
    dest_clk,
    dest_out);
  input src_clk;
  input src_in;
  input dest_clk;
  output dest_out;

  wire dest_clk;
  wire [0:0]p_0_in;
  wire src_clk;
  wire src_in;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "SINGLE" *) wire [3:0]syncstages_ff;

  assign dest_out = syncstages_ff[3];
  FDRE src_ff_reg
       (.C(src_clk),
        .CE(1'b1),
        .D(src_in),
        .Q(p_0_in),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(p_0_in),
        .Q(syncstages_ff[0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[0]),
        .Q(syncstages_ff[1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[1]),
        .Q(syncstages_ff[2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[2]),
        .Q(syncstages_ff[3]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "4" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_single" *) 
(* SIM_ASSERT_CHK = "0" *) (* SRC_INPUT_REG = "1" *) (* VERSION = "0" *) 
(* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) 
(* xpm_cdc = "SINGLE" *) 
module bd_top_auto_cc_0_xpm_cdc_single__4
   (src_clk,
    src_in,
    dest_clk,
    dest_out);
  input src_clk;
  input src_in;
  input dest_clk;
  output dest_out;

  wire dest_clk;
  wire [0:0]p_0_in;
  wire src_clk;
  wire src_in;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "SINGLE" *) wire [3:0]syncstages_ff;

  assign dest_out = syncstages_ff[3];
  FDRE src_ff_reg
       (.C(src_clk),
        .CE(1'b1),
        .D(src_in),
        .Q(p_0_in),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(p_0_in),
        .Q(syncstages_ff[0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[0]),
        .Q(syncstages_ff[1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[1]),
        .Q(syncstages_ff[2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[2]),
        .Q(syncstages_ff[3]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "5" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_single" *) 
(* SIM_ASSERT_CHK = "0" *) (* SRC_INPUT_REG = "0" *) (* VERSION = "0" *) 
(* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) 
(* xpm_cdc = "SINGLE" *) 
module bd_top_auto_cc_0_xpm_cdc_single__parameterized1
   (src_clk,
    src_in,
    dest_clk,
    dest_out);
  input src_clk;
  input src_in;
  input dest_clk;
  output dest_out;

  wire dest_clk;
  wire src_in;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "SINGLE" *) wire [4:0]syncstages_ff;

  assign dest_out = syncstages_ff[4];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(src_in),
        .Q(syncstages_ff[0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[0]),
        .Q(syncstages_ff[1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[1]),
        .Q(syncstages_ff[2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[2]),
        .Q(syncstages_ff[3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[4] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[3]),
        .Q(syncstages_ff[4]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "5" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_single" *) 
(* SIM_ASSERT_CHK = "0" *) (* SRC_INPUT_REG = "0" *) (* VERSION = "0" *) 
(* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) 
(* xpm_cdc = "SINGLE" *) 
module bd_top_auto_cc_0_xpm_cdc_single__parameterized1__10
   (src_clk,
    src_in,
    dest_clk,
    dest_out);
  input src_clk;
  input src_in;
  input dest_clk;
  output dest_out;

  wire dest_clk;
  wire src_in;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "SINGLE" *) wire [4:0]syncstages_ff;

  assign dest_out = syncstages_ff[4];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(src_in),
        .Q(syncstages_ff[0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[0]),
        .Q(syncstages_ff[1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[1]),
        .Q(syncstages_ff[2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[2]),
        .Q(syncstages_ff[3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[4] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[3]),
        .Q(syncstages_ff[4]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "5" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_single" *) 
(* SIM_ASSERT_CHK = "0" *) (* SRC_INPUT_REG = "0" *) (* VERSION = "0" *) 
(* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) 
(* xpm_cdc = "SINGLE" *) 
module bd_top_auto_cc_0_xpm_cdc_single__parameterized1__11
   (src_clk,
    src_in,
    dest_clk,
    dest_out);
  input src_clk;
  input src_in;
  input dest_clk;
  output dest_out;

  wire dest_clk;
  wire src_in;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "SINGLE" *) wire [4:0]syncstages_ff;

  assign dest_out = syncstages_ff[4];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(src_in),
        .Q(syncstages_ff[0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[0]),
        .Q(syncstages_ff[1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[1]),
        .Q(syncstages_ff[2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[2]),
        .Q(syncstages_ff[3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[4] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[3]),
        .Q(syncstages_ff[4]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "5" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_single" *) 
(* SIM_ASSERT_CHK = "0" *) (* SRC_INPUT_REG = "0" *) (* VERSION = "0" *) 
(* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) 
(* xpm_cdc = "SINGLE" *) 
module bd_top_auto_cc_0_xpm_cdc_single__parameterized1__12
   (src_clk,
    src_in,
    dest_clk,
    dest_out);
  input src_clk;
  input src_in;
  input dest_clk;
  output dest_out;

  wire dest_clk;
  wire src_in;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "SINGLE" *) wire [4:0]syncstages_ff;

  assign dest_out = syncstages_ff[4];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(src_in),
        .Q(syncstages_ff[0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[0]),
        .Q(syncstages_ff[1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[1]),
        .Q(syncstages_ff[2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[2]),
        .Q(syncstages_ff[3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[4] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[3]),
        .Q(syncstages_ff[4]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "5" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_single" *) 
(* SIM_ASSERT_CHK = "0" *) (* SRC_INPUT_REG = "0" *) (* VERSION = "0" *) 
(* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) 
(* xpm_cdc = "SINGLE" *) 
module bd_top_auto_cc_0_xpm_cdc_single__parameterized1__13
   (src_clk,
    src_in,
    dest_clk,
    dest_out);
  input src_clk;
  input src_in;
  input dest_clk;
  output dest_out;

  wire dest_clk;
  wire src_in;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "SINGLE" *) wire [4:0]syncstages_ff;

  assign dest_out = syncstages_ff[4];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(src_in),
        .Q(syncstages_ff[0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[0]),
        .Q(syncstages_ff[1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[1]),
        .Q(syncstages_ff[2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[2]),
        .Q(syncstages_ff[3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[4] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[3]),
        .Q(syncstages_ff[4]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "5" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_single" *) 
(* SIM_ASSERT_CHK = "0" *) (* SRC_INPUT_REG = "0" *) (* VERSION = "0" *) 
(* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) 
(* xpm_cdc = "SINGLE" *) 
module bd_top_auto_cc_0_xpm_cdc_single__parameterized1__14
   (src_clk,
    src_in,
    dest_clk,
    dest_out);
  input src_clk;
  input src_in;
  input dest_clk;
  output dest_out;

  wire dest_clk;
  wire src_in;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "SINGLE" *) wire [4:0]syncstages_ff;

  assign dest_out = syncstages_ff[4];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(src_in),
        .Q(syncstages_ff[0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[0]),
        .Q(syncstages_ff[1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[1]),
        .Q(syncstages_ff[2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[2]),
        .Q(syncstages_ff[3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[4] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[3]),
        .Q(syncstages_ff[4]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "5" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_single" *) 
(* SIM_ASSERT_CHK = "0" *) (* SRC_INPUT_REG = "0" *) (* VERSION = "0" *) 
(* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) 
(* xpm_cdc = "SINGLE" *) 
module bd_top_auto_cc_0_xpm_cdc_single__parameterized1__15
   (src_clk,
    src_in,
    dest_clk,
    dest_out);
  input src_clk;
  input src_in;
  input dest_clk;
  output dest_out;

  wire dest_clk;
  wire src_in;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "SINGLE" *) wire [4:0]syncstages_ff;

  assign dest_out = syncstages_ff[4];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(src_in),
        .Q(syncstages_ff[0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[0]),
        .Q(syncstages_ff[1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[1]),
        .Q(syncstages_ff[2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[2]),
        .Q(syncstages_ff[3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[4] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[3]),
        .Q(syncstages_ff[4]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "5" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_single" *) 
(* SIM_ASSERT_CHK = "0" *) (* SRC_INPUT_REG = "0" *) (* VERSION = "0" *) 
(* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) 
(* xpm_cdc = "SINGLE" *) 
module bd_top_auto_cc_0_xpm_cdc_single__parameterized1__16
   (src_clk,
    src_in,
    dest_clk,
    dest_out);
  input src_clk;
  input src_in;
  input dest_clk;
  output dest_out;

  wire dest_clk;
  wire src_in;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "SINGLE" *) wire [4:0]syncstages_ff;

  assign dest_out = syncstages_ff[4];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(src_in),
        .Q(syncstages_ff[0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[0]),
        .Q(syncstages_ff[1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[1]),
        .Q(syncstages_ff[2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[2]),
        .Q(syncstages_ff[3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[4] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[3]),
        .Q(syncstages_ff[4]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "5" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_single" *) 
(* SIM_ASSERT_CHK = "0" *) (* SRC_INPUT_REG = "0" *) (* VERSION = "0" *) 
(* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) 
(* xpm_cdc = "SINGLE" *) 
module bd_top_auto_cc_0_xpm_cdc_single__parameterized1__17
   (src_clk,
    src_in,
    dest_clk,
    dest_out);
  input src_clk;
  input src_in;
  input dest_clk;
  output dest_out;

  wire dest_clk;
  wire src_in;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "SINGLE" *) wire [4:0]syncstages_ff;

  assign dest_out = syncstages_ff[4];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(src_in),
        .Q(syncstages_ff[0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[0]),
        .Q(syncstages_ff[1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[1]),
        .Q(syncstages_ff[2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[2]),
        .Q(syncstages_ff[3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[4] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[3]),
        .Q(syncstages_ff[4]),
        .R(1'b0));
endmodule

(* DEST_SYNC_FF = "5" *) (* INIT_SYNC_FF = "0" *) (* ORIG_REF_NAME = "xpm_cdc_single" *) 
(* SIM_ASSERT_CHK = "0" *) (* SRC_INPUT_REG = "0" *) (* VERSION = "0" *) 
(* XPM_MODULE = "TRUE" *) (* is_du_within_envelope = "true" *) (* keep_hierarchy = "true" *) 
(* xpm_cdc = "SINGLE" *) 
module bd_top_auto_cc_0_xpm_cdc_single__parameterized1__18
   (src_clk,
    src_in,
    dest_clk,
    dest_out);
  input src_clk;
  input src_in;
  input dest_clk;
  output dest_out;

  wire dest_clk;
  wire src_in;
  (* RTL_KEEP = "true" *) (* async_reg = "true" *) (* xpm_cdc = "SINGLE" *) wire [4:0]syncstages_ff;

  assign dest_out = syncstages_ff[4];
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[0] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(src_in),
        .Q(syncstages_ff[0]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[1] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[0]),
        .Q(syncstages_ff[1]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[2] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[1]),
        .Q(syncstages_ff[2]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[3] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[2]),
        .Q(syncstages_ff[3]),
        .R(1'b0));
  (* ASYNC_REG *) 
  (* KEEP = "true" *) 
  (* XPM_CDC = "SINGLE" *) 
  FDRE \syncstages_ff_reg[4] 
       (.C(dest_clk),
        .CE(1'b1),
        .D(syncstages_ff[3]),
        .Q(syncstages_ff[4]),
        .R(1'b0));
endmodule
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`pragma protect key_keyowner="Mentor Graphics Corporation", key_keyname="MGC-VELOCE-RSA", key_method="rsa"
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`pragma protect key_keyowner="Mentor Graphics Corporation", key_keyname="MGC-VERIF-SIM-RSA-2", key_method="rsa"
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`pragma protect key_keyowner="Real Intent", key_keyname="RI-RSA-KEY-1", key_method="rsa"
`pragma protect encoding = (enctype="BASE64", line_length=76, bytes=256)
`pragma protect key_block
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`pragma protect key_keyowner="Xilinx", key_keyname="xilinxt_2021_07", key_method="rsa"
`pragma protect encoding = (enctype="BASE64", line_length=76, bytes=256)
`pragma protect key_block
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`pragma protect key_keyowner="Metrics Technologies Inc.", key_keyname="DSim", key_method="rsa"
`pragma protect encoding = (enctype="BASE64", line_length=76, bytes=256)
`pragma protect key_block
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kzquuXhk5LuzZfXWmhyDSyMGBWK1wN7iyMKMUg==

`pragma protect key_keyowner="Atrenta", key_keyname="ATR-SG-RSA-1", key_method="rsa"
`pragma protect encoding = (enctype="BASE64", line_length=76, bytes=384)
`pragma protect key_block
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kdqbo1u5hQwnMphluBKjdTA3nZ8VnpDbdq5R7hIF61tIrUfdjwQw02je

`pragma protect key_keyowner="Cadence Design Systems.", key_keyname="CDS_RSA_KEY_VER_1", key_method="rsa"
`pragma protect encoding = (enctype="BASE64", line_length=76, bytes=256)
`pragma protect key_block
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2gH862vcCfZu5Cd0Sp2ALgoqVxA+91lAIHJp3Q==

`pragma protect key_keyowner="Synplicity", key_keyname="SYNP15_1", key_method="rsa"
`pragma protect encoding = (enctype="BASE64", line_length=76, bytes=256)
`pragma protect key_block
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cFnl9tcL1wXJo/F3wvsbYM1W0UPHv69XAsEUhg==

`pragma protect key_keyowner="Mentor Graphics Corporation", key_keyname="MGC-PREC-RSA", key_method="rsa"
`pragma protect encoding = (enctype="BASE64", line_length=76, bytes=256)
`pragma protect key_block
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pEGz+6Hqi68CfF/4tMNiyHveP1lxnyAaiW6Kjg==

`pragma protect data_method = "AES128-CBC"
`pragma protect encoding = (enctype = "BASE64", line_length = 76, bytes = 629376)
`pragma protect data_block
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`pragma protect end_protected
`ifndef GLBL
`define GLBL
`timescale  1 ps / 1 ps

module glbl ();

    parameter ROC_WIDTH = 100000;
    parameter TOC_WIDTH = 0;
    parameter GRES_WIDTH = 10000;
    parameter GRES_START = 10000;

//--------   STARTUP Globals --------------
    wire GSR;
    wire GTS;
    wire GWE;
    wire PRLD;
    wire GRESTORE;
    tri1 p_up_tmp;
    tri (weak1, strong0) PLL_LOCKG = p_up_tmp;

    wire PROGB_GLBL;
    wire CCLKO_GLBL;
    wire FCSBO_GLBL;
    wire [3:0] DO_GLBL;
    wire [3:0] DI_GLBL;
   
    reg GSR_int;
    reg GTS_int;
    reg PRLD_int;
    reg GRESTORE_int;

//--------   JTAG Globals --------------
    wire JTAG_TDO_GLBL;
    wire JTAG_TCK_GLBL;
    wire JTAG_TDI_GLBL;
    wire JTAG_TMS_GLBL;
    wire JTAG_TRST_GLBL;

    reg JTAG_CAPTURE_GLBL;
    reg JTAG_RESET_GLBL;
    reg JTAG_SHIFT_GLBL;
    reg JTAG_UPDATE_GLBL;
    reg JTAG_RUNTEST_GLBL;

    reg JTAG_SEL1_GLBL = 0;
    reg JTAG_SEL2_GLBL = 0 ;
    reg JTAG_SEL3_GLBL = 0;
    reg JTAG_SEL4_GLBL = 0;

    reg JTAG_USER_TDO1_GLBL = 1'bz;
    reg JTAG_USER_TDO2_GLBL = 1'bz;
    reg JTAG_USER_TDO3_GLBL = 1'bz;
    reg JTAG_USER_TDO4_GLBL = 1'bz;

    assign (strong1, weak0) GSR = GSR_int;
    assign (strong1, weak0) GTS = GTS_int;
    assign (weak1, weak0) PRLD = PRLD_int;
    assign (strong1, weak0) GRESTORE = GRESTORE_int;

    initial begin
	GSR_int = 1'b1;
	PRLD_int = 1'b1;
	#(ROC_WIDTH)
	GSR_int = 1'b0;
	PRLD_int = 1'b0;
    end

    initial begin
	GTS_int = 1'b1;
	#(TOC_WIDTH)
	GTS_int = 1'b0;
    end

    initial begin 
	GRESTORE_int = 1'b0;
	#(GRES_START);
	GRESTORE_int = 1'b1;
	#(GRES_WIDTH);
	GRESTORE_int = 1'b0;
    end

endmodule
`endif
